A novel physical carrier sensing scheme for enhancing spatial reuse in multihop wireless networks

Yongning Zhang, B. Alawieh, C. Assi
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引用次数: 3

Abstract

Recently, tuning the physical carrier sensing threshold (CSth) has been proposed as an efficient mechanism to enhance the network throughput in an IEEE 802.11-based multihop ad hoc networks. The physical carrier sensing method reduces the likelihood of collision by preventing nodes in the vicinity of each other from transmitting simultaneously, while allowing nodes that are separated by a safe margin to engage in concurrent transmission. In this paper, we propose a distributed adaptive scheme through which nodes dynamically adjust their CSth to eliminate the likelihood of collisions from hidden terminals and in turn enhances spatial reuse by reducing the number of exposed terminals. Specifically, a node adjusts its CSth based on both its success/ failure history attempts and the information it receives from neighboring nodes through CTS packets. Moreover, to reduce the effect of exposed terminals, the proposed scheme employs the RTS/CTS exchange only for the purpose of informing neighboring nodes of their CSth but not to silence them. The proposed scheme adaptively performs a dynamic switch between the RTS/CTS access scheme and the basic scheme based on a predefined policy in order to avoid the additional overhead caused by the RTS/CTS exchange. Simulations results have demonstrated the significant throughput gains that can be achieved by the proposed scheme, compared with other methods in recent literature.
一种增强多跳无线网络空间复用的物理载波感知方案
近年来,在基于IEEE 802.11的多跳自组织网络中,调优物理载波感知阈值(CSth)作为提高网络吞吐量的有效机制被提出。物理载波感知方法通过防止彼此附近的节点同时传输来降低碰撞的可能性,同时允许被安全边界分隔的节点进行并发传输。在本文中,我们提出了一种分布式自适应方案,通过节点动态调整其CSth来消除隐藏终端的碰撞可能性,从而通过减少暴露终端的数量来增强空间重用。具体来说,一个节点根据它的成功/失败历史尝试和它通过CTS数据包从邻近节点接收的信息来调整它的CSth。此外,为了减少暴露终端的影响,该方案使用RTS/CTS交换仅用于通知相邻节点其CSth而不是使其沉默。该方案基于预定义策略自适应地在RTS/CTS访问方案和基本方案之间进行动态切换,以避免RTS/CTS交换带来的额外开销。仿真结果表明,与最近文献中的其他方法相比,该方案可以实现显着的吞吐量增益。
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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