基于混沌二值移幅键控的串扰消除方法

Yao Zhenjing, Hong Li, Li Yanan
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引用次数: 0

摘要

多通道超声测距系统的重要指标是相关特性和能量效率。具有良好相关特性的激励序列可以避免多通道超声传感器之间的串扰。高能效可提高测量范围。本文提出了一种利用混沌码调制的最优二值激励序列,包括混沌二值移幅键控(c- bask)、混沌二值移相键控(c- BPSK)和混沌二值移频键控(c- bfsk)来消除串扰的方法。为了获得最佳的相关特性和能量效率,采用非支配排序遗传算法(NSGA-II)对混沌二值激励序列进行优化。采用混沌二进制调制序列激励的八通道sencomp 600系列仪器级静电传感器组成的超声波测距系统进行了实际实验。实验结果表明,c- bfsk在相关特性和能量效率方面优于c- BASK和c- bpsk。在2 ms c-BFSK激励序列下,最长可测距离为720 cm(即c-BPSK和c-BASK分别增加11%和27%),最大相对误差为2.4%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crosstalk Elimination Method Based on Chaotic Binary Amplitude Shift Keying
The important indicators of multichannel ultrasonic ranging system are correlation characteristics and energy efficiency. The excitation sequences with good correlation characteristics can help avoid crosstalk among multi- channel ultrasonic sensors. High energy efficiency can enhance measurement range. This paper proposes a crosstalk elimination method by using the optimal binary excitation sequences modulated with chaotic codes, which include chaot- ic binary amplitude shift keying (c-BASK), chaotic binary phase shift keying (c- BPSK) and chaotic binary frequency shift keying (c-BFSK). To obtain the both best correlation characteristics and energy efficiency, the Non-dominated Sort- ing Genetic Algorithm-II (NSGA-II) is applied to optimize the chaotic binary excitation sequences. Real experiments have been conducted using an ultrason- ic ranging system that consists of eight-channel SensComp 600 series instru- ment-grade electrostatic sensors excited with chaotic binary modulation se- quences. The experimental results show that the c-BFSK outperforms the c- BASK and c-BPSK in terms of the correlation characteristics and energy effi- ciency. With 2 ms c-BFSK excitation sequences, the longest measurable dis- tance was 720 cm (i.e., increased 11% and 27% with c-BPSK and c-BASK, re- spectively) with maximal relative error 2.4%.
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