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Open-Loop Coherent Distributed Arrays

机译:开环相干分布式阵列

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The ability to cohere the wireless operations between separate, moving microwave systems enables significant increases in capability for remote sensing, radar, communications, and other microwave wireless applications. Open-loop coherent distributed arrays, which are distributed systems of nodes that coherently coordinate without external signal inputs from the destination, are introduced in this paper. A model of the signal received from a coherent distributed array is derived, and a statistical analysis of the variation in signal power in the presence of coordination errors is presented. Requirements on the tolerable errors for internode range measurement, beamsteering angle measurement, and internode clock phase synchronization are given as a function of the probability of achieving a given signal power. Approaches for achieving the necessary internode range and angle measurements are presented, and the experimental results of a novel one-way clock transfer approach to phase synchronization are shown. These examples demonstrate the feasibility of implementing coherent distributed arrays on moving platforms operating at frequencies extending into the microwave region.
机译:在移动的独立微波系统之间整合无线操作的能力极大地提高了遥感,雷达,通信和其他微波无线应用的能力。本文介绍了开环相干分布式阵列,该阵列是节点协调一致的分布式系统,无需来自目标的外部信号输入。推导了从相干分布式阵列接收的信号模型,并给出了在存在协调误差的情况下信号功率变化的统计分析。根据获得给定信号功率的概率,给出了对节点间距离测量,波束转向角测量和节点间时钟相位同步的容许误差的要求。提出了实现必要的节点间距离和角度测量的方法,并显示了一种新颖的单向时钟传输方法进行相位同步的实验结果。这些示例说明了在以延伸到微波区域的频率运行的移动平台上实现相干分布式阵列的可行性。

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