Improving TCP's Throughput and Fairness Stability in Vehicular Network

M. J. Auxilius Jude, S. Kuppuswami, V. C. Diniesh
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Abstract

Throughput and fairness performance of transmission control protocol (TCP) worsens critically under vehicular environment due to its weakly bounded congestion threshold parameter, rate reduction approach and congestion recovery algorithm. In this paper, a new congestion control algorithm for vehicular networks, called VC-TCP (Vehicular customized -TCP) is proposed to overcome the limitations of the existing independent congestion control approaches. The VC-TCP implements a newer congestion threshold parameter, which regulates the spurious rate reduction due to an abrupt increase in RTT spike value. During the congestion control process, VC-TCP uses a new recovery algorithm and bandwidth utilization based rate reduction, which substantially improves the flow fairness of TCP traffic flows with different bandwidth utilization levels. The throughput, flow fairness, and packet latency performances of VC-TCP is evaluated against the standard Vegas congestion control approach under simulated vehicular scenarios. The simulation outcomes verify the performance improvement of the proposed VC-TCP approach against the standard TCP variants in the different facets of the vehicular environment.
提高车用网络中TCP的吞吐量和公平性稳定性
由于传输控制协议(TCP)的拥塞阈值参数、速率降低方法和拥塞恢复算法的弱有界性,使得TCP在车载环境下的吞吐量和公平性性能严重恶化。为了克服现有独立拥塞控制方法的局限性,本文提出了一种新的车联网拥塞控制算法VC-TCP (vehicular customized -TCP)。VC-TCP实现了一个新的拥塞阈值参数,用于调节由于RTT峰值值突然增加而导致的误报率降低。在拥塞控制过程中,VC-TCP采用了一种新的恢复算法和基于带宽利用率的降率,大大提高了不同带宽利用率的TCP流量的公平性。在模拟车辆场景下,针对标准Vegas拥塞控制方法对VC-TCP的吞吐量、流量公平性和数据包延迟性能进行了评估。仿真结果验证了所提出的VC-TCP方法在车辆环境的不同方面相对于标准TCP变体的性能改进。
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