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Validation of a Controlled Reception Pattern Antenna (CRPA) Receiver Built from Inexpensive General-purpose Elements During Several Live Jamming Test Campaigns

机译:在几种直播干扰测试广告系列中验证了从廉价的通用元素构建的受控接收图案天线(CRPA)接收器

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The Controlled Reception Pattern Antenna (CRPA) is an effective approach for rejecting radio frequency interference. Conventionally, the dedicated CRPA antenna and hardware are usually precisely manufactured and calibrated carefully. The computational/processing requirement is always a major challenge for implementing a CRPA receiver. Even more demanding would be to incorporate the flexibility of the Software-Defined Radio (SDR) design philosophy in such an implementation. The Stanford University (SU) CRPA receiver development tackles these challenges to try to demonstrate the feasibility of a low cost commercial implementation by leveraging a SDR using Commercial Off-the-Shelf (COTS) components. This paper will discuss our real-time implementation of a COTS CRPA software receiver, its performance under numerous jamming conditions, and the lessons learned from these various trials. The developed CRPA receiver was tested in the live-jamming exercises in the US and Sweden. The scenarios include 1) dynamic jammers 2) static/multiple jammers in the various locations 3) different jammer types. This paper shows the test results including the C/No improvement. From these results, we can see the benefit of our implementation compared to a commercial receiver. We also "replay" the signal from the collected data sets. With this replay functionality, the signal from a single antenna and the composite signals by MVDR/power minimization algorithms are transmitted to commercial high-sensitivity GPS receiver. The replay results give us a true comparison between different algorithms/platforms.
机译:受控接收图案天线(CRPA)是拒绝射频干扰的有效方法。传统上,专用的CRPA天线和硬件通常是精确制造和仔细校准的。计算/处理要求始终是实现CRPA接收器的主要挑战。更苛刻的是在这样的实施中纳入软件定义的无线电(SDR)设计哲学的灵活性。斯坦福大学(SU)CRPA接收器开发解决这些挑战,以试图通过利用商业废弃货架(COTS)组件利用SDR来证明低成本商业实施的可行性。本文将讨论我们的实时实施COTS CRPA软件接收器,其在许多干扰条件下的性能,以及从这些各种试验中吸取的经验教训。开发的CRPA接收器在美国和瑞典的活干扰运动中进行了测试。这种情况包括1)动态干扰2)各个位置中的静态/多个干扰器3)不同的干扰类型。本文显示了试验结果,包括C / NO改善。根据这些结果,我们可以看到与商业接收器相比我们实现的好处。我们还从收集的数据集“重放”信号。利用此重放功能,MVDR /功率最小化算法来自单个天线的信号和由MVDR /功率最小化算法的信号被传输到商业高灵敏度GPS接收器。重播结果向我们提供不同算法/平台之间的真实比较。

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