加性高斯白噪声下数字二进制脉冲位置调制的通信过程

R. Bi
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引用次数: 0

摘要

数字脉冲位置调制(PPM)是频移键控的时域版本,它将每个可变脉冲编码到一个周期内的特定位置。虽然已有大量文献对光纤中PPM的应用进行了研究,但对加性高斯白噪声(AWGN)下的PPM工艺研究较少。本文对通过AWGN信道的2位消息信号构建了一个相对简单的模型。在对基带信号进行编码时,采用灰色编码,将每个周期的基带信号分成四等份进行编码。然后,它们都通过AWGN信道,并在MATLAB中进行基带信号与接收信号的星座。然后应用最小距离辨识法求出估计的基带信号。最后,基于之前的概率误差得到PPM的信噪比。在MATLAB中执行这些代码,我们得到了基带信号、星座和信噪比函数,都可以直接在图中显示出来。总的来说,我们的工作填补了PPM方法通过AWGN信道发送的空白。这也可以成为使用PPM实现与AWGN的整个通信过程的更广泛应用的初步基础。
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The communication process of digital binary pulse-position modulation with additive white Gaussian noise
Digital pulse-position modulation (PPM) is a time-domain version of frequency-shift keying that encodes each variable pulse to a particular position within a period. Although numerous essays have researched PPM applied to optical fiber, the PPM process with additive white Gaussian noise (AWGN) was not mentioned. In this paper, a relatively simple model was constructed for 2-bit message signals passing through the AWGN channel. While encoding the baseband signals, Gray Code was adopted to encode them in each period separated into four equal parts. Afterward, they all passed through the AWGN channel, and the constellation of baseband signals and received signals was performed in MATLAB. Then we applied the minimum distance identification method to find the estimated baseband signals. Finally, the PPM signal-tonoise ratio (SNR) was obtained based on previous probability errors. Executing the codes in MATLAB, we got the baseband signals, constellation, and SNR function that can all be directly shown in the figure. In general, our work filled the gap of the PPM method sending over the AWGN channel. This can also become the preliminary foundation for a broader range of applications using PPM to implement the whole communication process with AWGN.
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