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From OPS-SAT to PRETTY Mission: A Second Generation Software Defined Radio Transceiver for Passive Reflectometry

机译:从OPS-SAT到PRETTY任务:无源反射计的第二代软件定义无线电收发器

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After the successful launch of the ESA OPS-SAT Nanosatellite in December 2019, the Institute of Communication Networks at Graz University of Technology (TUG) has started its work on a new second-generation Software Defined Radio (SDR) transceiver platform for the ESA PRETTY mission. The mission goal of PRETTY is the demonstration of the passive reflectometry concept with an SDR on a 3U Nanosatellite. The PRETTY satellite requires a powerful second-generation SDR receiver that extends the functionality and performance of the first-generation SDR used for OPS-SAT. There are many lessons learned about the first-generation SDR characteristics, the performance, ease of use and the strengths but also the weaknesses of the design during the OPS-SAT environmental and functional testing campaign. The second-generation SDR design considers the experiences from the first-generation SDR and implements several improvements for the thermal behavior, mechanical sustainability, device control and status monitoring in order to achieve higher overall performance and reliability. The second-generation SDR uses an AD9361 radio frequency (RF) frontend chip, that allows the signal reception with two independent receive channels and signal transmission with two independent transmit channels. In particular, the new transmit functionality of the second-generation SDR is a remarkable improvement compared to the first-generation SDR for OPSSAT, due to its full-duplex, bidirectional communication capabilities. Further improvements provide the possibility, to extend the design with RF mixer boards, to achieve the flexibility required for future applications on higher RF bands.
机译:在2019年12月成功发射ESA OPS-SAT纳米卫星之后,格拉茨工业大学(TUG)的通信网络研究所已经开始为ESA PRETTY开发新的第二代软件定义无线电(SDR)收发器平台使命。 PRETTY的任务目标是通过3U纳米卫星上的SDR演示无源反射仪概念。 PRETTY卫星需要功能强大的第二代SDR接收器,以扩展用于OPS-SAT的第一代SDR的功能和性能。在OPS-SAT环境和功能测试活动中,有很多关于第一代SDR特性,性能,易用性以及优点和设计弱点的经验教训。第二代SDR设计借鉴了第一代SDR的经验,并对热行为,机械可持续性,设备控制和状态监控进行了一些改进,以实现更高的总体性能和可靠性。第二代SDR使用AD9361射频(RF)前端芯片,该芯片允许通过两个独立的接收通道进行信号接收,并通过两个独立的发送通道进行信号传输。尤其是,由于第二代SDR的全双工双向通信功能,与第一代SPS的SDR相比,第二代SDR的新发送功能有了显着改进。进一步的改进提供了使用RF混频器板扩展设计的可能性,以实现未来在更高RF频段上的应用所需的灵活性。

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