极性码及基于m -调制的OFDM-PLC系统

Inf. Comput. Pub Date : 2023-06-25 DOI:10.3390/info14070360
Ziyi Wang, Yichen Wang, R. Chen
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引用次数: 0

摘要

电力线通信(PLC)作为电力线通信的媒介,利用现有电网进行信息传输。它提供了一种低成本、高度可扩展的信号传输方法,有可能成为智能家庭、办公室和智能电网中提供宽带的首选技术。但是,电力线信道中的噪声,特别是脉冲噪声,严重影响PLC的通信质量。本文建立了一种采用高阶调制和极性码的OFDM-PLC系统。采用高阶QAM或APSK调制技术提高信号传输速率,并对系统性能进行了分析。为了对抗PLC信道中的脉冲噪声,我们首先采用多阻尼正弦函数的叠加建模,然后引入极性编码方案来抑制系统中的脉冲噪声,从而提高传输可靠性。仿真结果验证了所提出的基于OFDM-PLC系统的极性编码方案能够提高PLC信道在脉冲干扰下的误码率(BER)性能。
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Polar Codes and a M-ary Modulation-Based OFDM-PLC System
Power Line Communication (PLC) serves as a medium for communication over power lines, utilizing the existing power grid for information transmission. It offers a low-cost, highly scalable signal transmission method and has the potential to become the preferred technology for providing broadband in smart homes, offices, and smart grids. However, noise in the power line channel, especially impulse noise, seriously affects the communication quality of PLC. In this paper, we establish an OFDM-PLC system with higher-order modulation and polar codes. The higher-order QAM or APSK modulation technique is employed to increase the signal transmission rate and the system performance is analyzed. To combat the impulse noise in the PLC channel, we first model it using a superposition of multi-damping sinusoidal functions and then introduce the polar coding scheme to suppress the impulse noise in the system, thereby improving the transmission reliability. Simulation results verify that the proposed polar coding scheme based on the OFDM-PLC system can improve the Bit Error Rate (BER) performance of PLC channel transmission under impulse interference.
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