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On Improving Wireless Channel Utilization: A Collision Tolerance-Based Approach

机译:关于提高无线信道利用率的一种基于冲突容忍的方法

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Packet corruption caused by collision is a critical problem that hurts the performance of wireless networks. Conventional medium access control (MAC) protocols resort to collision avoidance to maintain acceptable efficiency of channel utilization. According to our investigation and observation, however, collision avoidance comes at the cost of miscellaneous overhead, which oppositely hurts channel utilization, not to mention the poor resiliency and performance of those protocols in face of dense networks or intensive traffic. Discovering the ability to tolerate collisions at the physical layer implementations of wireless networks, we in this paper propose Coco , a protocol that advocates simultaneous accesses from multiple senders to a shared channel, i.e., optimistically allowing collisions instead of simply avoiding them. With a simple but effective design, Coco addresses the key challenges in achieving collision tolerance, such as precise sender alignment and the control of transmission concurrency. We implement Coco in 802.15.4 networks and evaluate its performance through extensive experiments with 21 TelosB nodes. The results demonstrate that Coco is light-weight and enhances channel utilization by at least 20percent in general cases, compared with state-of-the-arts protocols.
机译:冲突导致的数据包损坏是严重危害无线网络性能的关键问题。传统的媒体访问控制(MAC)协议采用冲突避免技术来维持可接受的信道利用效率。但是,根据我们的调查和观察,避免冲突是以杂项开销为代价的,这反过来会损害通道利用率,更不用说那些协议在密集网络或密集流量下的弹性和性能差。为了发现在无线网络的物理层实现中能够容忍冲突的能力,我们在本文中提出了Coco协议,该协议提倡从多个发送者到共享信道的同时访问,即乐观地允许冲突而不是简单地避免冲突。通过简单但有效的设计,Coco解决了实现碰撞容忍的关键挑战,例如精确的发送方对齐和传输并发控制。我们在802.15.4网络中实施Coco,并通过在21个TelosB节点上进行的广泛实验来评估其性能。结果表明,与最先进的协议相比,在一般情况下,Coco重量轻且通道利用率提高了至少20%。

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