Performance Analysis of a novel equalizer for vehicular communication

B. Samatha, K. Kumar, Nagarjuna Karyemsetty
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引用次数: 2

Abstract

Intelligent Transport Systems (ITS) are high speed data communication system. In wireless communication, the signals transmitted through the channel are get effected by the physical characteristic and causes many different paths between the transmitter and the receiver. This always leads to phase shift, attenuation, delays, and distortion of the received signals arriving at the receiver end. In high speed digital data communication systems, equalizers are key components. Demodulating actual data from the noisy transmitted signal corrupted with interference among symbols, equalizers are the filters that can undo the channel noise. Adaptive equalizers utilized in vehicular communication to reduce the interference signal processing. The recent high speed digital communication systems need channel equalizers with a fast converging rate that cannot be met by conventional filters. In this paper we propose a novel linear MMNF equalization techniques using orthogonal frequency division multiplexing (OFDM). The simulation results are obtained using Python. We have conducted an experimental setup with real case measurements using the Raspberry Pi 3 B+ boards. The simulation results show that the equalizer at the receivers is good for noise free channel and is successful in removing ISI when compared to baseline model (standardized one).
一种新型车载通信均衡器性能分析
智能交通系统(ITS)是一种高速数据通信系统。在无线通信中,通过信道传输的信号受到物理特性的影响,导致发射器和接收器之间有许多不同的路径。这总是导致到达接收端接收信号的相移、衰减、延迟和失真。在高速数字数据通信系统中,均衡器是关键部件。从被符号间干扰破坏的有噪声的传输信号中解调实际数据,均衡器是可以消除信道噪声的滤波器。自适应均衡器用于车载通信,以减少干扰信号处理。高速数字通信系统需要具有快速收敛速率的信道均衡器,这是传统滤波器无法满足的。本文提出了一种基于正交频分复用(OFDM)的线性MMNF均衡技术。仿真结果是用Python编写的。我们已经使用树莓派3b +板进行了实际案例测量的实验设置。仿真结果表明,与基准模型(标准化模型)相比,该均衡器对无噪声信道具有良好的均衡性,能够有效地去除ISI。
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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