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Experimental performance evaluation of location distinction for MIMO links

机译:MIMO链路位置区分的实验性能评估

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A radio channel-based location distinction system monitors physical layer measurements of received signals to detect if a transmitter has changed position since its previous transmission. This paper explores the design space for MIMO-based location distinction systems. Using extensive channel measurements collected with two different MIMO testbeds, we make several observations about the tradeoffs inherent in MIMO location distinction, and the scaling of performance with respect to bandwidth, history size and insertion delay, and number of antenna elements. We show that MIMO location distinction is very reliable. For example, a 2×2 MIMO channel with a bandwidth of 80 MHz allows a 64-fold reduction in miss rate over the single-input single-output (SISO) channel for a fixed false alarm rate, achieving false alarm rates as low as 4 × 10−4 for a 2.4 × 10−4 probability of missed detection.
机译:基于无线电信道的位置区分系统监视接收到的信号的物理层测量值,以检测发送器自上一次发送以来是否已更改位置。本文探讨了基于MIMO的位置区分系统的设计空间。使用在两个不同的MIMO测试平台上收集的大量信道测量结果,我们对MIMO位置区分固有的权衡以及相对于带宽,历史记录大小和插入延迟以及天线元件数量的性能缩放进行了一些观察。我们表明,MIMO位置区分非常可靠。例如,对于固定的误报率,带宽为80 MHz的2×2 MIMO通道的失误率比单输入单输出(SISO)通道降低了64倍,从而将误报率降低到了4×10 −4 的丢失检测概率为2.4×10 −4

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