Department of Computer and Communication Systems Engineering, Faculty of Engineering, Universiti Putra Malaysia, Seri Kembangan, Malaysia.
Wireless and Photonics Network Research Centre (WiPNET), Universiti Putra Malaysia, Seri Kembangan, Malaysia.
PLoS One. 2020 Aug 13;15(8):e0237386. doi: 10.1371/journal.pone.0237386. eCollection 2020.
The IEEE 802.11ah standard relies on the conventional distributed coordination function (DCF) as a backoff selection method. The DCF is utilized in the contention-based period of the newly introduced medium access control (MAC) mechanism, namely restricted access window (RAW). Despite various advantages of RAW, DCF still utilizes the legacy binary exponential backoff (BEB) algorithm, which suffers from a crucial disadvantage of being prone to high probability of collisions with high number of contending stations. To mitigate this issue, this paper investigates the possibility of replacing the existing exponential sequence (i.e., as in BEB) with a better pseudorandom sequence of integers. In particular, a new backoff algorithm, namely Pseudorandom Sequence Contention Algorithm (PRSCA) is proposed to update the CW size and minimize the collision probability. In addition, the proposed PRSCA incorporates a different approach of CW freezing mechanism and backoff stage reset process. An analytical model is derived for the proposed PRSCA and presented through a discrete 2-D Markov chain model. Performance evaluation demonstrates the efficiency of the proposed PRSCA in reducing collision probability and improving saturation throughput, network throughput, and access delay performance.
IEEE 802.11ah 标准依赖传统的分布式协调功能 (DCF) 作为退避选择方法。DCF 用于新引入的媒体访问控制 (MAC) 机制的竞争期,即受限访问窗口 (RAW)。尽管 RAW 具有多种优势,但 DCF 仍使用传统的二进制指数退避 (BEB) 算法,该算法存在一个关键缺点,即在存在大量竞争站点时,碰撞的概率很高。为了解决这个问题,本文研究了用更好的整数伪随机序列替代现有指数序列(即 BEB 中的指数序列)的可能性。具体来说,提出了一种新的退避算法,即伪随机序列竞争算法 (PRSCA),用于更新 CW 大小并最小化碰撞概率。此外,所提出的 PRSCA 采用了不同的 CW 冻结机制和退避阶段重置过程。为所提出的 PRSCA 推导出了一个分析模型,并通过离散二维马尔可夫链模型进行了介绍。性能评估表明,所提出的 PRSCA 在降低碰撞概率、提高饱和吞吐量、网络吞吐量和接入延迟性能方面非常有效。