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Combined Wireless Ranging and Frequency Transfer for Internode Coordination in Open-Loop Coherent Distributed Antenna Arrays

机译:开环相干分布式天线阵列中节点间协调的无线测距和频率组合。

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Beamforming in distributed antenna arrays requires accurate coordination of the relative phasing between the separate wireless nodes. Principally, this coordination constitutes measuring the node separations and transferring a stable frequency reference, enabling beamsteering and ensuring that the local oscillators on the separate platforms are locked. A 4.5-GHz wireless system for simultaneous high-accuracy estimation of node separation and estimation of a wirelessly transferred 10-MHz frequency reference is presented in this article. Ranging is achieved using a spectrally sparse two-tone waveform with a tone separation of 200 MHz and pulsewidth of 2 mu s ; a 10-MHz frequency reference is modulated onto one of the ranging tones. The use of spectrally sparse waveforms allows simple transceiver designs compared to wideband ranging systems since the tones can be individually generated and received. The theoretical bounds for range and frequency estimation are derived for a set of common modulation formats, and experimental measurements of ranging accuracy and frequency estimation accuracy are presented, demonstrating that the proposed waveform can achieve high accuracy in both domains, with range accuracy of 3.35 mm and phase errors less than 18 degrees, supporting coherent distributed array operations up to 5.96 GHz. The results show that the ranging estimation is effectively independent of the modulation format of the reference frequency and the frequency estimation performance is independent of the sparse waveform design for ranging. Thus, the performance of range estimation and frequency transfer may be approached independently but in the same waveform.
机译:分布式天线阵列中的波束成形需要精确协调各个无线节点之间的相对相位。原则上,这种协调包括测量节点间隔和传输稳定的频率参考,实现波束控制并确保单独平台上的本地振荡器被锁定。本文介绍了一种4.5 GHz无线系统,用于同时高精度估计节点间隔和估计无线传输的10 MHz频率参考。使用频谱稀疏的两音波形来实现测距,该音的间隔为200 MHz,脉冲宽度为2 ms。 10 MHz频率参考被调制到测距音调之一上。与宽带测距系统相比,频谱稀疏波形的使用允许简单的收发器设计,因为可以单独生成和接收音调。推导了一组常见调制格式的范围和频率估计的理论界限,并给出了范围精度和频率估计精度的实验测量结果,表明所提出的波形可以在两个域中实现高精度,范围精度为3.35 mm相位误差小于18度,支持高达5.96 GHz的相干分布式阵列操作。结果表明,测距估计实际上与参考频率的调制格式无关,并且频率估计性能与测距的稀疏波形设计无关。因此,可以独立地但以同一波形来接近范围估计和频率转移的性能。

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