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2-D Direction-of-Arrival Estimation System Using Circular Array With Mutually Coupled Reference Signal

机译:使用带有互耦合参考信号的圆形阵列的二维到达方向估计系统

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Direction-of-arrival (DOA) systems rely on proper phase measurements acquired from receiving antennas for optimal performance. Unfortunately, imperfections in any antenna and receiver system may present false phase measurements, the major cause of DOA estimation error. This paper discusses experimental results from an actual implementation of synchronizing a DOA circular array receiver system to mitigate these imperfections. A reference signal located at the center of the DOA array was coupled to array elements such that both the coupled reference signals and signals from a target were captured simultaneously in the receiver. This coupled reference signal was used to compensate for any phase error offsets produced by receiver system imperfections on cable length, phase of local oscillators, and phase delays in active devices. Furthermore, this approach did not necessitate an off-line calibration process of each receiver channel requiring accurate measurements. We implemented a 16-element circular array DOA estimation system using the Universal Software Radio Peripheral platform operating in the Sand C-bands. Results show that this implementation was able to combat receiver phase offset errors and estimated the DOA angles with an rms error of 0.92°.
机译:到达方向(DOA)系统依靠从接收天线获取的适当相位测量来获得最佳性能。不幸的是,任何天线和接收器系统中的缺陷都可能导致相位测量错误,这是DOA估计误差的主要原因。本文讨论了同步DOA圆形阵列接收器系统以减轻这些缺陷的实际实现的实验结果。将位于DOA阵列中心的参考信号耦合到阵列元素,以便在接收器中同时捕获耦合的参考信号和来自目标的信号。这个耦合的参考信号用于补偿接收机系统在电缆长度,本地振荡器的相位以及有源设备中的相位延迟方面的缺陷所产生的任何相位误差偏移。此外,这种方法不必对每个需要精确测量的接收器通道进行离线校准过程。我们使用在Sand C波段中运行的通用软件无线电外围设备平台,实现了16个元素的圆形阵列DOA估计系统。结果表明,该实现方案能够克服接收机相位偏移误差,并以均方根误差为0.92°估算DOA角。

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