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Performance and Comparative Analysis of ADSA in a Vehicular Network: MAC Approach in IEEE 802.11p

机译:车载网络中ADSA的性能和比较分析:IEEE 802.11p中的MAC方法

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Vehicular network (VN) technologies have become an attractive area of attention all over the world. Two factors that have contributed in the development, design and implementation of the VN standards include the need to ensure safety and the need to consider road accident avoidance strategies. However, the innate dynamic and the high topological mobility of the nodes in Vehicular Ad Hoc Networks (VANETs) raise complex and challenging issues with the standard. One of the complexities is the problem posed by Doppler Effect (DE) resulting from the high mobility of the VANET nodes. In an attempt to compensate the induced Doppler Shift (DS), Automatic Doppler Shift Adaptation (ADSA) was recently introduced to combat DE in a VANET. ADSA proved to be more resilient and effective in term of Bit Error Rate (BER). Moreover, for realistic applications, BER tests alone are insufficient. Therefore, this work explores the strength of the refined ADSA method in terms of throughput and presents a comparative analysis of ADSA versus Adaptive Modulation Code (AMC) and Auto-Rate Fallback (ARF). Results from the analysis shows that the ADSA approach demonstrates strong robustness compared to AMC and ARF with up to 44 to 55% improvement in throughput and a 174 to 182% reduction in consumed time.
机译:车载网络(VN)技术已成为全世界关注的一个有吸引力的领域。在VN标准的开发,设计和实施中做出了两个贡献的因素包括:确保安全的需要和考虑避免道路交通事故的策略。但是,车载自组织网络(VANET)中节点的固有动态性和高拓扑移动性给标准提出了复杂而具有挑战性的问题。复杂性之一是由VANET节点的高移动性引起的多普勒效应(DE)造成的问题。为了补偿诱发的多普勒频移(DS),最近引入了自动多普勒频移自适应(ADSA)来对抗VANET中的DE。 ADSA被证明在误码率(BER)方面更具弹性和有效性。而且,对于实际应用而言,仅BER测试是不够的。因此,这项工作探索了改进的ADSA方法在吞吐量方面的优势,并提出了ADSA与自适应调制代码(AMC)和自动速率后备(ARF)的比较分析。分析结果表明,与AMC和ARF相比,ADSA方法具有很强的鲁棒性,吞吐量提高了44%至55%,消耗时间减少了174%至182%。

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