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首页> 外文期刊>Signal Processing, IET >Stochastic resonator to detect bipolar binary pulse amplitude modulated signals; analysis, parameter-induced SR designs and sine-induced SR
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Stochastic resonator to detect bipolar binary pulse amplitude modulated signals; analysis, parameter-induced SR designs and sine-induced SR

机译:随机谐振器,用于检测双极性二进制脉冲幅度调制信号;分析,参数诱导的SR设计和正弦诱导的SR

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摘要

A stochastic resonator has been considered as an alternative signal processing tool because of its noise-induced performance enhancement ability. Here, the resonator parameters, steady states and transition time of the system are redefined for bipolar binary pulse amplitude modulated (BPAM) signals such that the region in which the resonator benefits from noise can be identified. Simple parameter-induced SR (PSR) designs are then built, based on this analysis in order to configure the resonator in the optimum region. Furthermore, sine-induced SR based on using a periodic signal instead of noise is introduced to enhance the system performance and compared with noise-enhanced SR (NSR). It is shown that sine-induced SR provides a performance enhancement as it needs less power and does not require an adjustment relevant to the background noise. The results indicate that a resonator improves the receiver performance by eliminating noise if its parameters and BPAM characteristics are set accurately as given in the PSR designs, otherwise the resonator can benefit from either a noise as in NSR, or a sine wave as proposed.
机译:随机谐振器由于其噪声引起的性能增强能力而被视为替代信号处理工具。在此,为双极性二进制脉冲幅度调制(BPAM)信号重新定义了系统的谐振器参数,稳态和过渡时间,从而可以确定谐振器受益于噪声的区域。然后,基于此分析,可以构建简单的参数引发的SR(PSR)设计,以便将谐振器配置在最佳区域。此外,引入了基于使用周期信号而不是噪声的正弦感应SR来增强系统性能,并与噪声增强SR(NSR)进行了比较。结果表明,正弦感应SR提供了更高的性能,因为它需要的功率更少,并且不需要与背景噪声相关的调整。结果表明,如果按照PSR设计中的规定正确设置其参数和BPAM特性,则谐振器可以通过消除噪声来改善接收机性能,否则谐振器既可以受益于NSR中的噪声,也可以受益于所提出的正弦波。

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