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Software defined radios as cognitive relays for satellite ground stations incurring terrestrial interference

机译:软件将无线电定义为引起地面干扰的卫星地面站的认知中继

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Satellite to ground links are extremely vulnerable to any type of terrestrial interference due to the relatively weak satellite signal at the ground stations. This can cause connection failures or degradation in performance at the ground station, which could in some cases be significant or even catastrophic. The great flexibility of software defined radio (SDR) systems facilitates the implementation of cognitive relays as a complementary entity that can help reduce the effects of interference. In this paper, we describe a cognitive SDR testbed that has been developed based on the Universal Software Radio Peripheral (USRP) and the GNU radio software platform. One of our testbed's aims is to evaluate error performance improvements of satellite signal relays in the presence of interference. We report on performance evaluation in terms of bit error ratio (BER) as a function of carrier-to-noise ratio (CNR) and in the presence of interference, for our detect and relay algorithms in an example frequency band, using an emulated desired (satellite-relay-ground station) signal. Our testbed contains four separate segments: satellite (emulated), relay, interferer, and ground receiver. At each segment, we transmit and/or receive signals via SDRs or standard communication laboratory equipment. We consider two relaying protocols in our work, amplify-and-forward (AF), and decode-and-forward (DF). Initial experiments were indoors, although outdoor testing with small unmanned aircraft systems is planned for future work. Our experiments explore the effects of different relaying techniques, and provide some quantitative results on performance improvements via our software defined radio approach.
机译:由于地面站的卫星信号相对较弱,卫星到地面的链路极易受到任何类型的地面干扰。这可能会导致接地站的连接故障或性能下降,在某些情况下可能会很严重甚至是灾难性的。软件无线电(SDR)系统具有极大的灵活性,有助于将认知中继实现为可帮助减少干扰影响的补充实体。在本文中,我们描述了基于通用软件无线电外围设备(USRP)和GNU无线电软件平台开发的认知SDR测试平台。我们测试平台的目的之一是评估存在干扰时卫星信号中继的错误性能改进。我们针对误码率(BER)与载噪比(CNR)的函数以及在存在干扰的情况下的性能评估进行了报告,对于我们在示例频段中的检测和中继算法,使用了仿真的(卫星中继地面站)信号。我们的测试平台包含四个独立的部分:卫星(仿真),中继,干扰源和地面接收器。在每个部分,我们都通过SDR或标准通信实验室设备发送和/或接收信号。我们在工作中考虑了两个中继协议:放大转发(AF)和解码转发(DF)。最初的实验是在室内进行的,尽管计划在将来进行小型无人机系统的室外测试。我们的实验探索了不同中继技术的影响,并通过我们的软件定义无线电方法提供了一些有关性能改进的定量结果。

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