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System Distortion Model for the Cross-Validation of Millimeter-Wave Channel Sounders

机译:毫米波通道探测仪交叉验证的系统失真模型

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Because millimeter-wave directional channel measurements are time-consuming and expensive to collect, there is considerable interest in combining measurement data obtained with different channel sounders in order to yield more comprehensive datasets. The simplest way to verify that the results obtained with these different instruments in a given environment are comparable would be to transport the channel sounders to that environment, collect and process measurement data, and then compare the results. Because this is rarely feasible, we propose an alternative method that is much more practical. It involves: 1) Generating an ideal three-dimensional channel impulse response that corresponds to a scenario of interest, 2) Degrading the ideal response by applying a distortion model that capture the factors that limit the spatio-temporal resolution and dynamic range of each channel sounder, and 3) Applying the multipath component (MPC) extraction techniques used by the channel sounder to the distorted response. After the last step, one will observe: a) correctly estimated, b) incorrectly estimated, c) missing, and d) spurious MPCs. Discrepancies between the ideal and distorted responses will be readily apparent and the performance of the channel sounders can be easily compared in a given environment. The effort required to fully characterize the three-dimensional patterns of the transmitting and receiving antennas is considerable and further work is required to determine the corresponding accuracy requirements.
机译:由于毫米波定向信道测量非常耗时且收集昂贵,因此人们对组合使用不同信道探测仪获得的测量数据以产生更全面的数据集有着极大的兴趣。验证在给定环境中使用这些不同仪器获得的结果是否可比的最简单方法是将声道探测器发送到该环境,收集和处理测量数据,然后比较结果。因为这很少可行,所以我们提出了一种更实用的替代方法。它涉及:1)生成与感兴趣的场景相对应的理想三维通道脉冲响应,2)通过应用捕获限制每个通道的时空分辨率和动态范围的因素的失真模型来降低理想响应3)将信道探测仪使用的多径分量(MPC)提取技术应用于失真的响应。在最后一步之后,将观察到:a)正确估计,b)错误估计,c)丢失,和d)伪MPC。理想响应和失真响应之间的差异将很明显,并且在给定环境中可以轻松比较声道测深仪的性能。完全表征发射和接收天线的三维方向图所需的精力是巨大的,需要进一步的工作来确定相应的精度要求。

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