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Performance Study of Block ACK and Reverse Direction in IEEE 802.11n Using a Markov Chain Model

机译:利用马尔可夫链模型对IEEE 802.11n中块aCK和反向的性能研究

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摘要

IEEE 802.11n networks are widely used in home and corporate network environments because they offer high-speed wireless Internet access at relatively low-cost. The 802.11n standard introduced several key features including Block acknowledgement (ACK) and reverse direction (RD) data transmission for enhanced system performance. An in-depth study of 802.11n system capacity for Block ACK mechanisms (both protected and unprotected) and RD data flows is required to assist optimum planning and design of such systems in view of the limited wireless channel capacity. In this paper we study the interdependencies of Block ACK and RD mechanisms using a discrete bi-directional Markov chain model under non-saturated traffic loads. We present a mathematical model to derive throughput, delay, and packet loss probability for both protected and unprotected Block ACKs under varying loads. We validate the model using MATLAB based numerical studies. Results obtained show that the combined effect of protected Block ACK and RD flows has a positive impact on system performance. However, unprotected Block ACK wastes transmission opportunity (TXOP) especially in collisions and therefore degrades the system performance. Our findings reported in this paper provide some insights into the performance of 802.11n with respect to Block ACK and RD methods. This study may help network researchers and engineers in their contribution to the development of next generation wireless LANs such as IEEE 802.11ac.
机译:IEEE 802.11n网络被广泛用于家庭和公司网络环境中,因为它们以相对较低的成本提供了高速无线Internet访问。 802.11n标准引入了几个关键功能,包括块确认(ACK)和反向(RD)数据传输,以增强系统性能。鉴于无线信道容量有限,需要深入研究Block ACK机制(受保护和不受保护)和RD数据流的802.11n系统容量,以帮助此类系统的最佳规划和设计。在本文中,我们使用离散双向马尔可夫链模型研究了非饱和交通负荷下Block ACK和RD机制的相互依赖性。我们提出了一个数学模型,以得出在不同负载下受保护和不受保护的块ACK的吞吐量,延迟和丢包率。我们使用基于MATLAB的数值研究来验证模型。获得的结果表明,受保护的块ACK和RD流的组合影响对系统性能具有积极影响。但是,未保护的块ACK浪费了传输机会(TXOP),尤其是在冲突中,因此降低了系统性能。我们在本文中报告的发现提供了关于Block ACK和RD方法的802.11n性能的一些见解。这项研究可以帮助网络研究人员和工程师为下一代无线局域网(如IEEE 802.11ac)的开发做出贡献。

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