MPAC装置中前置信号合成的傅里叶分析

IF 3.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Yilin Ji;Chunhui Li;Wei Fan
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引用次数: 0

摘要

前置信号合成(PFS)是一种流行的信道仿真方法,用于多探头消声室(MPAC)设置下的多输入多输出空中(MIMO-OTA)测试。它的目的是综合目标传播信道的二阶统计量的时空相关性。模拟的空间和时间相关性在封闭的被测设备(DUT)的密闭体积(测试区域)中进行评估。在行业中,经常被问到(i)在求解探针权重时,测试区域内的最小足够空间采样密度,以及(ii)不同DUT的天线辐射方向图对模拟信道的影响。本文从功率谱密度函数在方向域和多普勒频域,即时空相关函数的傅立叶对偶的角度分析解决这些问题。此外,我们使用相同的傅里叶对偶性来研究(i)经验统计量与单信道实现的统计期望不同的根本原因,以及(ii)两种频谱操作,即去相关和白化操作,在改善模拟信道的经验统计量方面的适用性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fourier Analysis of the Prefaded Signal Synthesis in MPAC Setup
The prefaded signal synthesis (PFS) is a popular channel emulation method used for multiple-input multiple-output over-the-air (MIMO-OTA) testing with the multi-probe anechoic chamber (MPAC) setup. It aims to synthesize the second-order statistics of a target propagation channel in terms of the spatial and temporal correlation. The emulated spatial and temporal correlation is evaluated in a confined volume (test zone) enclosing the device-under-test (DUT). In the industry, it has been often asked about (i) the minimum sufficient spatial sampling density within the test zone when solving probe weights, and (ii) the effect of the antenna radiation pattern of different DUT’s on the emulated channel. In this paper, we aim to address those questions analytically from the perspective of the power spectral density function in the direction and Doppler frequency domain, i.e., the Fourier dual of the spatial and temporal correlation function. Moreover, we use the same Fourier duality to study (i) the root cause of the empirical statistics being different from the statistical expectation for a single channel realization, and (ii) the applicability and effectiveness of two spectral operations, namely the decorrelation and the whitening operation, on improving the empirical statistics for the emulated channel.
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来源期刊
CiteScore
6.50
自引率
12.50%
发文量
90
审稿时长
8 weeks
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