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Bistable stochastic resonance enhanced 4-ary PAM signal detection under low SNR

机译:低信噪比下的双稳态随机共振增强4元PAM信号检测

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摘要

To boost the performance of 4-ary pulse amplitude modulated (PAM) at low signal-to-noise ratio (SNR), bistable stochastic resonance (BSR) system is introduced into digital communications system and get a reliable signal detection scheme. In this paper, we first analyse BSR system for different amplitudes of 4-ary PAM signals. The steady-state of the bistable system will be statistically distinct, and the feasibility of the proposed detection scheme is confirmed. On this basis, we present a detailed study on steady-state transitions of the BSR system, and an explicit expression of the bistable system parameters is derived. By setting the bistable system parameters, bistable system, 4-ary PAM signal, and noise reach the resonance state, and the BSR-based detection scheme is implemented. Moreover, we derive an analytical expression to calculate the symbol error rate (SER) of 4-ary PAM signals with the BSR-based detection under additive white Gaussian noise (AWGN). Finally, the simulation results validate that BSR-based detection scheme can improve the detection performance while efficiently reducing the symbol error rate.
机译:为了提高低信噪比(SNR)时四进制脉冲幅度调制(PAM)的性能,将双稳态随机共振(BSR)系统引入数字通信系统中,并获得了可靠的信号检测方案。在本文中,我们首先针对4进制PAM信号的不同幅度分析BSR系统。双稳态系统的稳态在统计上将是不同的,并且所提出的检测方案的可行性得到了证实。在此基础上,我们对BSR系统的稳态跃迁进行了详细的研究,并导出了双稳态系统参数的明确表示。通过设置双稳态系统参数,双稳态系统,4进制PAM信号和噪声达到共振状态,实现了基于BSR的检测方案。此外,我们推导了一个解析表达式,以在加性高斯白噪声(AWGN)下使用基于BSR的检测来计算4元PAM信号的符号错误率(SER)。最后,仿真结果验证了基于BSR的检测方案可以提高检测性能,同时有效降低符号错误率。

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