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Plane wave compensation technique for multiple-input multiple-output over-the-air testing in small multi-probe anechoic chamber

机译:小型多探头消声室中用于多输入多输出空中测试的平面波补偿技术

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摘要

Multiple-input multiple-output (MIMO) over-the-air (OTA) testing is often executed in multi-probe anechoic chamber (MPAC), the size of which is generally large enough so that the waves radiated from the probes can be considered plane waves in test area. The physical dimension of test setups is a key cost factor. In order to save laboratory space and reduce the cost, a compensation technique for spherical waves synthesising plane waves is proposed, which can be applied in small anechoic chamber. The object is to investigate the performances of the proposed plane wave compensation technique on MIMO terminal OTA testing in small MPAC. In the simulation, this technique presents good performances on various metrics, e.g. field distribution, spatial correlation, power angular spectrum estimation. As demonstrated in simulation, the ring radius of anechoic chamber can be reduced and the conventional far field criteria can be relieved.
机译:经常在多探针消声室(MPAC)中执行多输入多输出(MIMO)空中(OTA)测试,其大小通常足够大,这样就可以考虑从探头辐射的波平面波在测试区域。测试设置的物理尺寸是关键的成本因素。为了节省实验室空间并降低成本,提出一种球面波合成平面波的补偿技术,可以应用于小型消声室。目的是研究所提出的平面波补偿技术在小型MPAC中对MIMO终端OTA测试的性能。在仿真中,此技术在各种指标(例如,场分布,空间相关性,功率角谱估计。如仿真所示,可以减小消声室的环半径,并可以减轻常规的远场标准。

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