TXOP Combinatorial Problem in IEEE 802.11e HCCA Networks

Ming-Hua Cheng, Cheng-Han Lin, W. Hwang, Feng-Cheng Yu
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Abstract

The Hybrid Coordination Function (HCF) was proposed in IEEE 802.11e, including the competition-based Enhanced Distributed Channel Access (EDCA) and polling-based HCF Controlled Channel Access (HCCA). This paper mainly carries on the research in the HCCA mechanism. In the HCCA mechanism, the Sample Scheduler offers a way to determine the time duration of the Transmission Opportunity (TXOP). The determination of TXOP is calculated by the equation according to two parameters of transmission, including the Mean Data Rate and Packet Size. Next, Sample Scheduler distributes the result of the TXOP to the QSTA. However, QSTAs are not able to completely utilize the allocated TXOP, which causes the waste of remaining TXOPs. The remaining TXOPs of each QSTA are wasted. Therefore, this paper focuses on allocating the remaining TXOP to QSTAs that can transmits more data packets and reduces the packet dropped rate. The simulation results show that the proposed scheme increases the system throughput and decreases the packet loss rate by utilizing the remaining TXOP.
IEEE 802.11e HCCA网络中的TXOP组合问题
IEEE 802.11e中提出了混合协调功能(HCF),包括基于竞争的增强型分布式信道接入(EDCA)和基于轮询的HCF控制信道接入(HCCA)。本文主要对HCCA机制进行研究。在HCCA机制中,样本调度程序提供了一种确定传输机会(TXOP)持续时间的方法。根据平均数据速率和数据包大小这两个传输参数,通过方程计算出TXOP的确定。接下来,Sample Scheduler将TXOP的结果分发给QSTA。然而,qsta不能完全利用分配的TXOP,这导致了剩余TXOP的浪费。每个QSTA的剩余TXOPs都被浪费了。因此,本文的重点是将剩余的TXOP分配给能够传输更多数据包并降低丢包率的qsta。仿真结果表明,该方案利用剩余的TXOP,提高了系统吞吐量,降低了丢包率。
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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