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Software Defined Radio Market : Key Drivers and Technological Advancements Shaping the Future
The Software-Defined Radio (SDR) market has experienced significant growth over the past few years, driven by various technological advancements, the increasing demand for wireless communication systems, and the need for more flexible and cost-efficient solutions in the telecommunications sector. SDR represents a shift from traditional hardware-based radio systems to those that use software to control the functions typically handled by hardware components. This technology has garnered attention due to its ability to provide greater flexibility, scalability, and reconfigurability in wireless communication systems, particularly in sectors like defense, telecommunications, and broadcasting.

Market Drivers of the Software-Defined Radio Market
1. Growing Demand for Flexible Communication Systems
One of the primary drivers of the SDR market is the increasing need for adaptable and flexible communication systems. Traditional radio systems often have fixed functionalities that limit their ability to adapt to different communication standards or respond to evolving technological advancements. SDRs, on the other hand, can be reprogrammed and reconfigured through software, enabling them to support various radio protocols, frequencies, and modulations. This flexibility is especially valuable in environments where communication standards evolve rapidly, such as in the military and telecommunications industries.
In the defense sector, for example, SDRs allow military forces to quickly adapt their communications to different frequencies and encryption standards depending on the operational environment. This adaptability is crucial for maintaining secure and efficient communication in dynamic and unpredictable scenarios. Similarly, in the telecommunications industry, SDRs enable telecom operators to easily upgrade their systems and incorporate new standards, such as 5G, without requiring significant hardware changes.
2. Technological Advancements in Radio Frequency (RF) Components
Advances in radio frequency (RF) components have also contributed to the growth of the SDR market. RF components, such as antennas, amplifiers, and mixers, are essential for the functioning of SDR systems. Over the past few years, improvements in the performance and efficiency of these components have allowed SDR technology to reach new levels of performance. For instance, the development of wideband and multiband RF components has made it possible to design SDRs that can operate over a broader range of frequencies, supporting a wide array of communication standards simultaneously.
In addition, advancements in digital signal processing (DSP) technologies have enabled SDRs to process complex signals more efficiently, further improving their performance. The ability to process high-speed, high-frequency signals in real-time is essential for applications such as high-definition broadcasting, military communication, and emergency response systems, all of which increasingly rely on SDRs to deliver reliable, high-quality service.
3. Increased Adoption of 5G Networks
The rollout of 5G networks is another significant driver for the SDR market. As mobile operators transition from 4G to 5G, they need to upgrade their infrastructure to support the higher data rates, lower latency, and increased network capacity required by 5G. SDRs play a critical role in this transition because they allow telecom operators to deploy flexible, scalable, and cost-effective solutions that can easily be upgraded as the network evolves.
5G networks require a wide range of new frequencies and technologies, such as massive MIMO (Multiple Input, Multiple Output) and beamforming, which can be efficiently implemented using SDRs. By using software to control radio parameters, telecom operators can ensure that their equipment remains compatible with new 5G standards without having to invest heavily in new hardware. This capability significantly reduces operational costs and accelerates the deployment of 5G infrastructure.
4. Cost Efficiency and Reduced Time-to-Market
Another key advantage of SDR technology is its cost efficiency. Traditional radio systems often require expensive, specialized hardware components for each communication standard or frequency band. In contrast, SDRs use software to reconfigure the system, eliminating the need for multiple hardware systems. This results in significant cost savings, especially for organizations that operate in multiple regions or industries with diverse communication requirements.
Additionally, SDRs can reduce the time-to-market for new products and services. In industries such as telecommunications and defense, where the ability to quickly deploy new solutions is critical, SDRs enable companies to introduce new features or adapt to new standards faster than ever before. Software upgrades can be implemented remotely, without the need for on-site hardware modifications, allowing for quicker rollouts and reducing downtime.
5. Military and Defense Applications
The military and defense sector has been one of the earliest adopters of SDR technology due to its ability to provide secure, flexible, and efficient communication in dynamic operational environments. SDRs enable armed forces to communicate across different frequency bands, which is essential for military operations that require interoperability with various communication systems.
In addition to supporting communication, SDRs can be used for electronic warfare, radar systems, and surveillance applications. The ability to quickly switch frequencies and protocols makes SDRs ideal for operations in hostile or contested environments where secure and reliable communication is paramount. The increasing adoption of SDR technology in defense applications is expected to continue to drive market growth in the coming years.
6. Rising Demand for Internet of Things (IoT) Connectivity
The Internet of Things (IoT) is another growing trend that is fueling demand for SDR technology. As more devices become connected to the internet, there is an increasing need for flexible communication systems that can support a variety of IoT devices across different communication protocols. SDRs are well-suited for IoT applications because they can easily be reconfigured to support different wireless standards, such as Wi-Fi, Bluetooth, Zigbee, and cellular networks.
IoT applications span a wide range of industries, from smart homes and healthcare to industrial automation and agriculture. SDRs can provide the necessary communication infrastructure to ensure seamless connectivity across these diverse IoT devices, further driving the growth of the SDR market.
Conclusion
In conclusion, the Software-Defined Radio market is experiencing substantial growth, driven by several factors including the increasing demand for flexible communication systems, technological advancements in RF components and digital signal processing, the adoption of 5G networks, cost efficiency, military applications, and the rising demand for IoT connectivity. As industries continue to embrace digital transformation and require more agile, scalable, and cost-effective solutions, the SDR market is poised to continue its expansion in the coming years.
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#netboon#OutdoorAntenna#5GAntenna#WiFiAntenna#HighGainAntenna#LPDAAntenna#WirelessConnectivity#OutdoorWirelessNetwork#5GNetwork#WiFiNetwork#WirelessInternet
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In-Depth Analysis of Network Management Market Analysis by Top Key Players
According to a new report published by Allied Market Research, titled, “Network Management Market, by Component (Hardware, Software, Service), by Deployment Mode (On-premise, Cloud), by Network Type (LAN, MAN, WAN), by Organization Size (Large Enterprises, Small and Medium-sized Enterprises), by Industry Vertical (BFSI, Manufacturing, Retail, Healthcare, IT and Telecom, Others): Global Opportunity Analysis and Industry Forecast, 2023–2032” The network management market was valued at $9.5 billion in 2022, and is estimated to reach $25.3 billion by 2032, growing at a CAGR of 10.6% from 2023 to 2032.
Network management is the procedure of administering, managing and working a data network using a network management system. Current network management systems use software and hardware to constantly collect and analyses data and push out configuration changes for increase in performance, reliability, and security. It involves configuring monitoring and possibly reconfiguring components in a network with the goal of providing optimal performance, minimum downtime, proper security, accountability, and flexibility. An effective network management program can identify and respond to cyber threats before they spread and impact user experience. Network management ensures best practice standards and compliance with regulatory requirements. Better network security enhances network privacy and provides users reassurance that they can use their devices freely. For instance, in June 2023, Nokia Corporation launched the Pandion Multiband Remote Radio Heads and Shikra outdoor and indoor small cells, 5G-Advanced baseband control card Ponente, new baseband capacity card Levante and Lodos, as well as intelligent network management and optimization solutions range “MantaRay”. This development is expected to help telecom operators to meet their sustainability goals.
On the basis of component, the global network management market share was dominated by the hardware segment in 2022 and is expected to maintain its dominance in the upcoming years. Network hardware helps to establish an effective mode of communication, thereby improving business standards. It also promotes multiprocessing and enables sharing of resources, information, and software with ease. However, the service segment is expected to witness the highest growth during the forecast period. As service segment help to deploy and integrate distinct solutions in an enterprise ecosystem is expected to provide lucrative opportunities for the market growth. Furthermore, services play a vital role in the network management market, as they focus on meeting client requirements, including reduced cost and enhanced software performance.
By region, North America dominated the market share in 2022 for the network management industry. North America is home to numerous technology giants, contributing to the development and production of cutting-edge network management, and security solutions. In addition, factors such as the growth of remote work and the surge in online services have fueled the demand for reliable, high-performance network management industry in the region. However, Asia-Pacific is expected to exhibit the highest growth during the forecast period. Factors such as rapid proliferation of 4G, 5G in developing countries of Asia-Pacific, increase in subscriber base, favorable government policies and regulations, and demand for higher networking security solution are expected to boost the growth of the region at a considerable pace.
The COVID-19 pandemic has profoundly impacted the network management industry, triggering a seismic shift in the way organizations approach connectivity and IT infrastructure. The demand for robust and secure networks skyrocketed, forcing network management professionals to rapidly adapt to the challenges of supporting a decentralized workforce with an unprecedented surge in remote work. The need for scalable solutions, increased bandwidth, and enhanced security measures became paramount.
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In addition, the pandemic accelerated digital transformation initiatives, prompting organizations to invest in cloud-based services and advanced networking technologies. However, economic uncertainties led to budget constraints for some, prompting a strategic reassessment of network management priorities. Cybersecurity concerns surged as threat actors exploited the chaos, necessitating heightened vigilance and proactive defense strategies. Despite the challenges, the pandemic served as a catalyst for innovation, driving the adoption of AI and automation in network management. Professionals face the ongoing task of balancing resilience, flexibility, and security in the networks that underpin the modern workplace as the industry continues to evolve in the wake of COVID-19.
Key Findings of the Study
By component, the hardware segment accounted for the largest network management market share in 2022.
By deployment mode, the on-premise segment accounted for the largest network management market share in 2022.
Based on network type, the LAN segment accounted for the largest network management market share in 2022.
Based on organization size, the large enterprise segment accounted for the largest network management market share in 2022.
Depending on industry vertical, the BFSI sector accounted for the largest network management market share in 2022.
Region wise, North America generated the highest revenue in 2022.
The key players that operate in the network management market analysis are Cisco Systems, Inc., IBM Corporation, Microsoft Corporation, juniper Networks, Inc., SolarWinds Corporation, Broadcom Inc., Huawei Technologies Co., Ltd., Hewlett Packard Enterprise, BMC Software, Inc., and Nokia Corporation. These players have adopted various strategies to increase their market penetration and strengthen their position in the network management industry.
About Us: Allied Market Research (AMR) is a full-service market research and business-consulting wing of Allied Analytics LLP based in Portland, Oregon. Allied Market Research provides global enterprises as well as medium and small businesses with unmatched quality of “Market Research Reports Insights” and “Business Intelligence Solutions.” AMR has a targeted view to provide business insights and consulting to assist its clients to make strategic business decisions and achieve sustainable growth in their respective market domain.
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Vodafone and Ericsson team up to provide even faster 5G
Ericsson and Vodafone have begun installing new 5G antennas in the UK, seeking to improve capacity, coverage, and performance. According to a press release, the antennas will not create an additional footprint. As per the announcement, the antennas being installed are AIR 3218, compact active-passive antennas with an integrated radio and multiband passive antenna technology, all in one single…
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Smart Antennas Market Overview and Regional Outlook Study 2017 – 2032
The smart antennas market refers to the market for antenna systems that are equipped with advanced signal processing techniques to improve wireless communication performance. Smart antennas, also known as adaptive antennas or digital beam forming antennas, can dynamically adjust their radiation pattern to optimize signal reception and transmission in a specific direction or to multiple users simultaneously.
These antennas are commonly used in various wireless communication systems, including cellular networks (such as 3G, 4G, and 5G), Wi-Fi, satellite communications, radar systems, and military applications. By employing advanced algorithms and techniques, smart antennas can mitigate interference, enhance signal quality, increase network capacity, and improve overall system efficiency.
Key factors driving the growth of the smart antennas market include the increasing demand for high-speed data connectivity, growing mobile and wireless communication networks, rising adoption of smart devices and Internet of Things (IoT) devices, and the need for better network coverage and performance. Additionally, the deployment of 5G networks, which require advanced antenna systems to support massive data traffic and provide low-latency connections, is expected to fuel the demand for smart antennas.
The market for smart antennas is segmented based on type, technology, application, and geography. Types of smart antennas include switched beam antennas, adaptive array antennas, and multiband antennas. Technologies used in smart antennas encompass MIMO (Multiple Input Multiple Output), beam forming, and spatial processing techniques. Applications of smart antennas can be found in sectors such as telecommunications, aerospace and defence, automotive, industrial, and others.
Revolutionizing the Automotive Industry: Smart Antenna Market to Surpass US$ 12.45 Billion by 2032 with an Impressive CAGR of 12.2% As per the report published by FMI, the global automotive smart antenna market is projected to have a rapid-paced CAGR of 12.2% during the forecast period.
Overall, the smart antennas market is expected to continue growing in the coming years as wireless communication technologies advance, 5G networks expand, and the demand for high-speed connectivity and efficient wireless networks increases across various sectors.
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Market Segmentations: Global Smart Antennas Market: By Company • Airgain Inc. • Broadcom Limited • Intel Corporation • Motorola Solutions • Qualcomm Technologies • Telstra • Texas Instruments Global Smart Antennas Market: By Type • SIMO • MIMO • MISO Global Smart Antennas Market: By Application • Wi-Fi Systems • WiMAX Systems • Cellular Systems • RADAR Systems Global Smart Antennas Market: Regional Analysis All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Smart Antennas market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
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Microwave Network Equipment Market is Booming Worldwide | Gaining Revolution In Eyes of Global Exposure
Latest business intelligence report released on Global Microwave Network Equipment Market, covers different industry elements and growth inclinations that helps in predicting market forecast. The report allows complete assessment of current and future scenario scaling top to bottom investigation about the market size, % share of key and emerging segment, major development, and technological advancements. Also, the statistical survey elaborates detailed commentary on changing market dynamics that includes market growth drivers, roadblocks and challenges, future opportunities, and influencing trends to better understand Microwave Network Equipment market outlook. List of Key Players Profiled in the study includes market overview, business strategies, financials, Development activities, Market Share and SWOT analysis are Ericsson (Sweden),Huawei Technologies Co., Ltd. (China),Nokia Corporation (Finland),Aviat Networks (United States),SIAE Microelectrica Group (Italy),Ceragon Networks Ltd. (Israel),ZTE Corporation (China),DragonWave-X (Canada)
Microwave network equipment is the wireless communication technology which utilizes the high-frequency beams of radio waves to deliver the high-speed connection for all kind of communication. This technology is an essential part of mobile backhaul with the widespread utilization of 4G network and Pre5G deployment. The Microwave network equipment consists of multiband and antennas ad other accessories, this technology ensures transmission quality and delivers the secure transferring channels for traffic at the base stations. Key Market Trends: Advancements in Microwave Network Equipment Technology
The Advent of 5G Microwave Network Equipment Opportunities: Increasing Spendings on Microwave Network Equipment
Rising Demand for Microwave Network Equipment from developing and Developed Countries
Market Growth Drivers: The Demand for the Huge Amount Transmission Technology with the Capability of Transferring from Long Distances Challenges: Troubleshooting Related Problems with Microwave Network Equipment The Global Microwave Network Equipment Market segments and Market Data Break Down by Type (Network Planning Tools, Site Commissioning Tool, Operation and Maintenance Tools), Application (4G and 5G Mobile Backhaul, 3G Backhaul Aggregation, Leased Line Replacement, Enterprise Networks, Others), Microwave Antenna (Micro Strip Patch Antenna, Horn Antenna, Parabolic Antenna, Plasma Antenna, Others), Accessories (Point-to-Point (PTP) Microwave Antennas, Elliptical Waveguides, Elliptical Waveguide Connectors, Elliptical Waveguide Tool, Pressurization, Rectangular & Flexible-Twistable Waveguides, Others), System (Communication Networks, Relay Stations, Transmission System, Terminal Equipment, Interconnection Cable)
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AMA Research & Media LLP
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Size, Share, Trends, and Forecast 2018-2027 for the Metamaterials Market

The antenna segment is expected to have a significant market share in the metamaterial business based on application. The growth is attributed to global advances in 5G technology, as well as breakthroughs in communication satellites and Wi-Fi technology. The Metamaterials Market is being aided by the growing trend of miniaturisation of telecommunication equipment, as well as the increasing use of metamaterials as a result of the growing interest in multiband antennas. Furthermore, as second and third world countries become more digitally advanced, the number of cell phone users is likely to rise, resulting in increasing investment in the sector.
Read More @ https://cmiinfopiece.blogspot.com/2022/06/metamaterials-marketsize-share-trends.html
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PCTEL unveils 5G configurable sharkfin antenna for intelligent transportation
PCTEL unveils 5G configurable sharkfin antenna for intelligent transportation
PCTEL, specialist provider of wireless technology, introduced its new 5G, configurable, and low-profile antenna platform for Intelligent Transportation and Public Safety applications. The new Trooper™ Max 5G FR1 antenna platform has been designed to PCTEL’s high quality and performance standards. Configurable and optimized for multiband applications, the platform is ideal for Intelligent…
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Promise of a Solar Storm & Satellite Environment Check-In | Space Weather News 08.22.2019
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Antenna

7 element 144MHz LFA-Q Super-Gainer Quad Style Yagi
February 01, 2015 No comments
Description If it is GAIN you want from a small boom, this is the antenna for you! Wow, Super compact boom!! Massive 13.6dBi from this antenna!… Read more

QM7 – Seven elements Yagi -Uda Antenna – 144MHz
December 03, 2014 No comments
Make yourself your antenna for 144MHz Great yagi antenna for 2 meters Band – Download .pdf File – To open file you neeed adobe reader … Read more

3-Element 3-Band Mini-Beam from ZX-Yagi
February 01, 2015 No comments
3-Element 3-Band Mini-Beam from ZX-Yagi Better have a small one than none…. Compact built and light-weight 3-band antenna for 10, 15 and 20m. Ab… Read more

3/3 (6) element 50/70MHz Yagi (1.2m)
July 26, 2019 No comments
An Excellent Dual Band Yagi for 50/70MHz with 1.2m boom Model: DB-664 A dualband balun is recommended for this antenna, details can be found HERE The… Read more

ALEXLOOP PREMIER
May 02, 2018 No comments
The AlexLoop has long been the gold standard of the portable magnetic loop antenna. The AlexLoop Premier is the new and further enhanced version of th… Read more

KT31WARC, 18.068-18.168 / 24.890-24.990 MHZ
November 03, 2015 No comments
The updated KT31WARC offers flexibility in size and frequencies. It is truly unique in many ways. The KT31WARC covers 12,17 and 20 or 30 meters. 20 or… Read more

Multiband Delta Antenna – M0PLK
May 04, 2015 No comments
Multiband Delta Antenna Closed loop antennas are always less sensitive to noise than open driven element antennas (e.g. vertical or dipole). T… Read more
News

FCC issues $39,000 + Forfeiture Order against man from North Carolina
August 22, 2019 No comments
The WIA report the FCC has issued a $39,000 + Forfeiture Order against a man from North Carolina, for intentional misuse of a local public safety radi… Read more

Inter-American Proposal Removes 47 – 47.2 GHz from Bands under Study for 5G Services
August 21, 2019 No comments
The 34th meeting of the Inter-American Telecommunication Commission (CITEL) Permanent Consultative Committee II (PCC.II) concluded a week of meetings… Read more
ARRL Contest and DXCC Rules Now Prohibit Automated Contacts
August 20, 2019 No comments
Following the direction of the ARRL Board of Directors, ARRL has incorporated changes to the rules for all ARRL-sponsored contests and DXCC, prohibiti… Read more

Happy 150! The Hiram Percy Maxim Birthday Celebration!
August 20, 2019 No comments
As announced in September 2019 QST – page 86 This year marks the 150th anniversary of the birth of the League’s first president and… Read more

Alexanderson Alternator Station SAQ Hails “Incredible” Number of Listener Reports
August 20, 2019 No comments
Sweden’s Alexanderson Alternator station SAQ says it received 438 listener reports — “an incredible amount” — for its June 30 Alexanderson Day transmi… Read more

Pirates On US Navy Satellites – UHF SatCom
August 18, 2019 No comments
Here we take a look at how to listen to the Brazillian Pirates on UHF SatCom Read more

FCC Dismisses ARRL, AMSAT Requests in Small Satellite Proceeding
August 16, 2019 No comments
An FCC Report and Order (R&O) released August 2 in the so-called “small satellite” rulemaking proceeding, IB Docket 18-86, failed to address conce… Read more
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Review

Unboxing the AnyTone 878PLUS by David Casler
August 22, 2019 No comments
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Yaesu 891 + WSJT + FT8 Digital on Raspberry Pi 4
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Wouxun KG-UV980P Quad Band First Look
August 16, 2019 No comments
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NX-3000 Series lightbar and custom voice prompts | Kenwood Comms
August 15, 2019 No comments
The lightbar and custom voice prompts are shown in operation on the NX-3000 series heandheld walkie talkie radio, these features are a big advantage f… Read more

The RS-918 clone of a clone of an outstanding open source SDR transceiver, the mcHF
August 14, 2019 No comments
RS-918 10WATT HF SDR Transceiver RX:1.8-30MHz TX:All HAM HF BANDS,Full Modes: SSB(J3E),CW,AM(RX Only),,FM, FREE-DV Features: Spectrum Dynamic Waterf… Read more

Yaesu FT3D Full Review and Battery Torture Test
August 13, 2019 No comments
“This is it. The first complete unbiased review of the new Yaesu FT3D dual band Fusion handheld ham radio with built in GPS and APRS. Watch this… Read more

SDRplay HF Diversity Demo
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App – Mobile

New APP for digital QST
March 25, 2019 No comments
Apple has released a new app for digital QST (version 5.1) readers that use that platform. A long-standing problem involved the inability of some Appl… Read more

6 Must Have Amateur Radio Apps!
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iWSPR TX – WSPR for iOS version 2.8 now available
October 16, 2018 No comments
WSPR WSPR implements a protocol designed for probing potential propagation paths with low-power transmissions. Normal transmissions carry a station’s… Read more

RUMlogNG2Go for iOS version 3.5.2 now available
August 19, 2018 No comments
Thomas Lindner, DL2RUM, is happy to announce the availability of version 3.5.2 of his RUMlogNG2Go logger for the iPhone and iPad. RUMlogNG2Go can be … Read more

SmartSDR for iOS v2.6.2 Now Available
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FlexRadio Systems announces the release of SmartSDR for iOS v2.6.2 is now available for download or update from the Apple App Store. This App requires… Read more
QRZ.com App for Android now in Beta Testing
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EchoLink for iOS version 2.10.18 is now available
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EchoLink for iOS version 2.10.18 is now available in the App Store. This is a 64-bit build that is fully compatible with iOS 10 and modern iOS devices… Read more
The post Promise of a Solar Storm & Satellite Environment Check-In | Space Weather News 08.22.2019 appeared first on QRZ NOW – Ham Radio News.
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Latest Research Report to uncover key Factors of RF Tunable Filters Market
Radio frequency signals that form a broad range of electromagnetic spectrum are widely used for wireless communication. RF (Radio Frequencies) Tunable filter is one of the most crucial component of a wireless system for filter signals. It is designed to operate on signals in megahertz to gigahertz frequency ranges. It is a band pass filter used to pass waves of particular radio frequency and block the undesirable ones including noise. Also, its frequency can be adjusted according to application. Furthermore, on a shared frequency band, these filters play a vital role in separating and combining different frequencies. The application of RF tunable filter are vast including smart phones, smart appliances, consumer electronics, radar and military applications, smart wearable, automotive sector. Also, these filter are used to minimize cost of smart phones as well as to reduce data traffic. Usage of smart phones and connecting devices exponentially increased in last decade and expected to continue positive graph.
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Market Dynamics: RF Tunable Filters Market
Exponentially growing wireless industry and usage of smartphones are supplementing RF Tunable Filters market. Also, laptop, tablet, smart TV’s, wearable other consumer electronic, connecting devices including, automotive sector expected to play major role in growth. Furthermore, increasing share of expenditure on military and radar applications is driving growth in some geography. Next-generation transceiver for wireless applications is driving factor for investment in reconfiguration research of RF Tunable Filters. Evolution of new technology 5g and advancement in automotive sector also expected to lead the growth of RF Tunable Filters market. However with newer technology demanding requirements such as complex design, wide tuning range, high tuning speed, higher performance, lower cost, lighter weight and smaller size are challenging to growth of RF tunable filters market.
Further, with increasing spending capability of middle class and demand for cost efficient wireless communication system with multi-functionality, multiband, miniaturization the market for RF filters is expected to show positive growth during the forecast period.
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Fundamental changes ahead as ground systems prepare for constellations, 5G
https://sciencespies.com/space/fundamental-changes-ahead-as-ground-systems-prepare-for-constellations-5g/
Fundamental changes ahead as ground systems prepare for constellations, 5G
This article originally appeared in the July 29, 2019 issue of SpaceNews magazine.
When Spire Global was building a constellation of cubesats to gather maritime and weather data in 2015, the startup built its own UHF ground station network. Now, most startups wouldn’t consider building their own ground systems because they can rely on a growing roster of companies that specialize in handling data flowing between satellites and ground networks.
“Most satellite flyers and data collectors are not particularly keen on spending energy on the ground solution because it’s not core to their interest or capabilities,” said Mike Carey, co-founder and chief strategy officer of Atlas Space Operations, a Traverse City, Michigan, company that offers satellite communications as a service. “We see movement away from companies building their own networks and more reliance on a service-based model.”
The ground systems business has changed dramatically in recent years thanks to a massive increase in data volume, advanced technology and fresh competition. More change is coming as constellations in low Earth orbit multiply and individual satellites collect and transmit more data than ever before.
“The amount of data coming from satellites will increase tremendously in the coming 10 years,” said Stefan Gustafsson, Swedish Space Corp. senior vice president for strategy and sustainable business. To cope, companies need to adopt new methodologies to transfer data from space to Earth in addition to focusing on data management throughout the chain from the satellite to the customer, including onboard the satellite and at the ground stations, he added.
Many ground system specialists are turning to technology to speed up the flow of data from satellites to the ground. Years ago, Kongsberg Satellite Services of Norway relied primarily on S-band and X-band antennas. Now, KSAT also transfers data in Ka-band and the Norwegian company is working with Tesat, an Airbus Defense and Space subsidiary based in Germany, to install optical ground stations.
Swedish Space Corp.’s Yatharagga Satellite Station in Australia includes a 13.56-meter S band antenna with capabilities for Telemetry Tracking & Command (TT&C) and data downlink services. Credit: Swedish Space Corp.
Increased reliance on optical communications is essential given the growth in demand for bandwidth, said Barry Matsumori, chief executive of BridgeComm, the Denver-based optical communications company previously known as BridgeSat. “With all kinds of communications needing more performance, whether it’s for space-based Earth observation or telecommunications or on the ground for 5G, the speed requirement is only going in one direction,” Matsumori said by email. “If one wants to get into not only 10s of gigabits per second but hundreds of gigabits, you need to think about optical systems to augment what can be done in the RF world.”
Communications satellites and their ground segments will play important roles in 5G networks, said Lluc Palerm-Serra, Northern Sky Research senior analyst. “5G opens a window of opportunity for the satellite industry to be integrated with the general telecom ecosystem,” he added.
To make that integration successful, though, ground systems will need to be extremely flexible and adaptable. Terrestrial communications networks rely on software to reconfigure themselves based on demand. Increasingly, individual satellites and constellations rely on software to adapt to changing conditions.
“If you have software-defined networks feeding us on the ground and the payloads or the constellations changing on a regular basis in space, if the ground system is this static entity between the two it’s going to be the bottleneck,” said Greg Quiggle, Kratos Defense and Security Solutions product management vice president. “For the industry to be a good alternative to terrestrial networking, it’s really important that the ground system make that leap forward.”
The goal is to establish ground systems that can dynamically change their configuration without changing hardware, said Christopher Richins, CEO and co-founder of RBC Signals of Redmond, Washington, a startup that offers satellite communications infrastructure as a service.
Ground station operators have been moving toward that goal for years, replacing analog with digital technology. Kongsberg Satellite Services, for example, built an application programming interface “that allows us to run scheduling for hundreds of spacecraft through a network of hundreds of antennas,” said Katherine Monson, KSAT USA head.
Still, many teleports are filled with racks of analog devices to combine channels into a satellite uplink and split channels from a satellite downlink. Once companies succeed in digitizing the spectrum, “it starts to look like signals routed through an internet protocol network,” Quiggle said. “If you do that right, not only do you drastically reduce the cost of the infrastructure, you make it manageable.”
Once the satellite signals are converted to bits, the bits can flow into public or private cloud networks. Through cloud computing, ground station operators can handle the massive increase in satellite data without huge capital expenditures.
“You almost have to do this otherwise, the ground system would become so expensive it actually would stand in the way of continued growth for the industry,” Quiggle said.
In fact, ground system companies are working hard to reduce the cost of satellite operations and data transfer.
“There will be a lot of satellites up there,” Gustafsson said. “We need to be very cost effective to be able to operate all these satellites. You can’t operate 10,000 satellites the same way you operate two.”
A Kratos Defense and Security Solutions’ photo illustration of a network operations center. Credit: Kratos photo illustration
Ground systems companies are preparing to support growing numbers of satellites, in part, by rapidly building new ground stations. In addition, companies are testing phased array and electronically steered antennas. For the moment, it still costs companies less to buy multiple parabolic antennas than a single phased array, but growing demand is likely to reduce the cost of phased array technology.
“We think that phased array antenna price points will come down so that a multi-satellite, multiband antenna capability will serve the missions of large satellite constellations,” said Carey.
Monson agrees. “The ability to support multiple communication links at the same time is obviously going to bring the cost down,” she said. “The more that we can bring the cost basis of space down, the more missions become viable and the more the industry grows.”
Looking ahead, companies also note an increased emphasis on security.
“We have customers who want to be exclusively in the cloud,” said Paul Kennedy, Earth observation systems vice president for MDA, a Maxar company. “We have customers who want to be exclusively in highly secure systems. Increasingly, we’re seeing customers who want hybrid systems with tremendous privacy and security on certain data sources and a way to use the cloud to integrate other data sources.”
In the future, artificial intelligence and machine learning also are likely to play key roles in space-to-ground communications networks. “We’re working on systems that can make decisions like information processing and extraction on the spacecraft that previously would have been made on the ground,” Kennedy said. “That changes the relationship between the spacecraft and ground systems as well as the need for antennas and data transfer networks.”
While in some ways the industry is moving toward greater standardization of ground systems to serve many different customers, companies still are designing networks to serve individual clients.
“We are in an innovative phase right now,” said Linda Lyckman, SSC senior vice president for business and technology innovation. “The biggest challenge is not only the technology development, it’s talking to the new players, understanding the market and the needs of the end user.”
Atlas Space Operations, AWS Ground Station team to bring the Amazon cloud to the Atlas Freedom Network
Atlas Space Operations’ 3-meter antenna in Mojave, California. Credit: Atlas Space Operations
The satellite ground systems business is experiencing rapid change, prompting new business models and alliances. Two of the industry’s recent entrants forged a new bond in July.
Atlas Space Operations, a company established in 2015 to offer satellite communications as a service, announced plans to support AWS Ground Station within its Atlas Freedom Network. Amazon unveiled AWS Ground Station in 2018 to offer satellite customers access to Amazon Web Services’ cloud-computing.
Through the latest agreement, Atlas and AWS will offer customers an expanded ground station network, simplified satellite management and access to AWS data services, said Mike Carey, Atlas co-founder and chief strategy officer.
Prior to the July announcement, Atlas was a member of the AWS Partner Network, a large group of cloud software and service vendors working with the industry giant. Under the new agreement, Atlas will provide customers with access to AWS services through its Freedom cloud-based ground station network.
“Amazon has phenomenal data hosting, data transit and secure storage capability,” Carey said. “Atlas’ expertise is taking raw data from a spacecraft and doing all the work required to so that when it gets to the customer by way of the cloud it’s ready for use.”
In addition, the Atlas Freedom Network takes care of satellite command and control, scheduling and management of all hardware and software resources necessary for successful satellite communications, Carey said.
AWS Ground Station began offering service at its first two sites in May. The company plans to operate 12 sites by the end of the year. Atlas operates 10 ground stations and plans to have 31 sites running by the end of 2020.
— Debra Werner
#Space
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RF Tunable Filters Market: Pin-Point Analysis For Changing Competitive Dynamics
Radio frequency signals that form a broad range of electromagnetic spectrum are widely used for wireless communication. RF (Radio Frequencies) Tunable filter is one of the most crucial component of a wireless system for filter signals. It is designed to operate on signals in megahertz to gigahertz frequency ranges. It is a band pass filter used to pass waves of particular radio frequency and block the undesirable ones including noise.
Also, its frequency can be adjusted according to application. Furthermore, on a shared frequency band, these filters play a vital role in separating and combining different frequencies. The application of RF tunable filter are vast including smart phones, smart appliances, consumer electronics, radar and military applications, smart wearable, automotive sector. Also, these filter are used to minimize cost of smart phones as well as to reduce data traffic. Usage of smart phones and connecting devices exponentially increased in last decade and expected to continue positive graph.
Market Dynamics: RF Tunable Filters Market
Exponentially growing wireless industry and usage of smartphones are supplementing RF Tunable Filters market. Also, laptop, tablet, smart TV’s, wearable other consumer electronic, connecting devices including, automotive sector expected to play major role in growth. Furthermore, increasing share of expenditure on military and radar applications is driving growth in some geography.
Next-generation transceiver for wireless applications is driving factor for investment in reconfiguration research of RF Tunable Filters. Evolution of new technology 5g and advancement in automotive sector also expected to lead the growth of RF Tunable Filters market. However with newer technology demanding requirements such as complex design, wide tuning range, high tuning speed, higher performance, lower cost, lighter weight and smaller size are challenging to growth of RF tunable filters market.
Further, with increasing spending capability of middle class and demand for cost efficient wireless communication system with multi-functionality, multiband, miniaturization the market for RF filters is expected to show positive growth during the forecast period.
Market Segmentation: RF Tunable Filters Market
The global RF Tunable filters market has been segmented based on devices type, operating frequency range, end-use industry and region. These filters can be classified in two type band tunable band pass filters and band tunable band reject filters, on basis of use in various field of television broadcasting, radar system, public safety, computer and mobile platform networks, remote control, remote metering/monitoring, and many more. The tuning mechanism in tunable filters can be classified into three major types: mechanical, magnetic and electronic. Depending on the requirements and specifications, RF filters classified as lumped element and distributed element circuits. On basis of region, the RF Tunable filters market can be segmented into North America, Europe, Asia Pacific, Middle East & Africa, and South America.
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North America likely to holds major share of global RF tuning filter market. Moreover, increasing expenditure on military spending also one of the fueling factor for growth in these region during forecast period. Increasing use of smartphones, consumer electronics, connecting devices in developing nations of APAC such as China, India is expected to be major motivating factor for growth of RF tuning filter. Furthermore increasing spending capability of middle class in developing country is hoped to fueling the growth of RF tuning filter market during forecast period.
Key players operating in the global RF tunable filters market include Fairview Microwave, Fraunhofer, K&L Microwave, Lorch Microwave, Netcom, New Edge Signal Solutions, Pasternack Enterprises Inc, Wainwright Instruments and some others. These players focus on different growth strategies such as introducing new technology, product launches, joint venture, collaborations, partnerships, agreements, acquisition.
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