Design of digital pulse-position modulation system based on minimum distance method

Bowen Li
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Abstract

Pulse-position modulation (PPM) is a form of signal modulation in which M message bits are encoded by transmitting a single pulse in one of 2M possible required time shifts. It is primarily useful for optical communications systems, which tend to have little or no multipath interference. PPM is currently being used in fiber-optic communications, deep-space communications, and continues to be used in R/C systems. In this paper, we simulate a relatively complete process of PPM transmission. We generate the basic form of PPM using random sequences and then we visualize the impact of AWGN on the signal on the PPM real plain. Then we use the minimum distance discrimination method to demodulate the signal. Details about errors are collected as well to illustrate the point. At last, we imitate the PAM system to calculate the BER.
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基于最小距离法的数字脉冲位置调制系统设计
脉冲位置调制(PPM)是一种信号调制形式,其中M个消息位通过在2M可能需要的时移之一中传输单个脉冲来编码。它主要用于光通信系统,往往很少或没有多径干扰。PPM目前用于光纤通信、深空通信,并继续用于R/C系统。在本文中,我们模拟了一个比较完整的PPM传动过程。我们使用随机序列生成PPM的基本形式,然后在PPM真实平面上可视化AWGN对信号的影响。然后采用最小距离判别法对信号进行解调。为了说明这一点,还收集了有关错误的详细信息。最后,模拟PAM系统计算误码率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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