Time-reversal with limited signature precision: Tradeoff between complexity and performance

Yi Han, Yan Chen, K. Liu
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Abstract

The success of time-reversal (TR) technique relies on the design of TR signature from the multi-path profile. In practice, the signature is of limited precision instead of being infinite due to the finite resolution in hardware. Such limited signature precision will degrade the TR focusing effect and thus the system performance. Although several works have been proposed to study the performance of TR system with one-bit signature, a general relation between the resolution of signature and the system performance has not been established to answer the question: how many bits are needed for TR systems to achieve desirable system performance? In the paper, we address the question by studying the TR system with limited signature precision. We derive theoretically the relationship between the received signal-to-interference-plus-noise ratio (SINR) and the quantization step. Through simulations, we find that for a typical TR system, 4-bit resolution for the signature is good enough to achieve good system performance.
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具有有限签名精度的时间反转:复杂性和性能之间的权衡
时间反转(TR)技术的成功依赖于基于多路径剖面的时间反转签名的设计。在实际应用中,由于硬件分辨率有限,签名精度有限,而不是无限的。这种有限的签名精度会降低TR聚焦效果,从而降低系统性能。虽然已经提出了一些工作来研究具有1位签名的TR系统的性能,但尚未建立签名分辨率与系统性能之间的一般关系来回答这个问题:TR系统需要多少位才能达到理想的系统性能?本文通过研究具有有限签名精度的TR系统来解决这个问题。从理论上推导了接收的信噪比(SINR)与量化步长之间的关系。通过仿真,我们发现对于典型的TR系统,签名的4位分辨率足以达到良好的系统性能。
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