利用BCH编码分析毫米波VANET通信中的多普勒效应

Arshee Ahmed, Haroon Rasheed
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引用次数: 1

摘要

在毫米波通信中,由于波长较短,信号会衰减和失真。由于载波频率高,路径损耗也很大。此外,它更容易受到雨水和大气衰减的影响。因此,在过去几年中,对可靠的通信链路和高传输速率的需求急剧增加。车载自组织网络(VANET)中的无线通信涉及到错误数最少的传输。VANET中节点的高迁移率导致接收端的载波频率产生诱导多普勒频移(IDS)。因此,通过深入了解VANET通信信道,可以实现车载环境中毫米波链路的有效通信,这与在6 GHz以下频率下研究的通信有重要区别。多普勒频移会对V2V通信的可靠性产生负面影响。本文利用先前的毫米波中Bose-Chaudhuri-Hocquenghem (BCH)编码的推导表达式,推导了VANET通信的多普勒效应的解析表达式。观察到,所提出的模型结果优于处理多普勒频移的现有技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyzing Doppler Effects in Millimeter Wave VANET Communications Using BCH Coding
The signal is attenuated and distorted in millimeter wave communication due to the short wavelength. Path loss is also significant because of its high carrier frequency. Further, it is more susceptible to rain and atmospheric attenuation. So the demand for reliable communication links and high transmission rates have tremendously increased during the last few years. The wireless communication in Vehicular Ad-Hoc Network (VANET) involves the transmission with lowest number of errors. The high mobility of the nodes in VANET results in an Induced Doppler Shift (IDS) in the carrier frequency at the receiver end. Therefore, effective communication in millimeter wave links for vehicular environments can be achieved by a deep understanding of the VANET communication channel, which is importantly different from those studied at frequencies below 6 GHz. Doppler shifts can negatively impact the reliability of V2V communication. In this paper, the analytical expression of the Doppler Effect for VANET communication is derived using our previous derived expression for Bose-Chaudhuri-Hocquenghem (BCH) coding in millimeter waves. It is observed that the proposed model results outmatch existing techniques addressing Doppler shifts.
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