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Distributed Algorithms for QoS in Wireless Ad Hoc Networks Under the Primary Interference Model

机译:主干扰模型下无线自组网的QoS分布式算法

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Consider a wireless network consisting of a set of wireless nodes and a set of communication links, where each communication link corresponds to a pair of nodes that are within communication radius of each other. Under the primary interference model, two communication links cannot be active at the same time if they are incident to a common node. This model of interference arises in Bluetooth networks, where transmissions between a master node and slave nodes in a piconet are scheduled by time-division duplexing, and in CDMA systems when each node is equipped with a single transceiver. Each communication link has a certain minimum bandwidth quality-of-service requirement. The admission control problem is to determine whether the network has sufficient resources to satisfy the bandwidth requirements. In this work, distributed algorithms are proposed for this admission control problem, and performance guarantees of these distributed algorithms are given. If each node has knowledge of a certain global parameter, then a distributed algorithm for flow admission control is given which has the same performance as an optimal, centralized algorithm, i.e. the distributed algorithm gives a condition that is both necessary and sufficient for a set of flow rates to be feasible.
机译:考虑由一组无线节点和一组通信链路组成的无线网络,其中每个通信链路对应于彼此通信半径内的一对节点。在主干扰模型下,如果它们是入射到公共节点,则两个通信链路不能同时处于活动状态。蓝牙网络中出现这种干扰模型,其中,当每个节点配备有单个收发器时,通过时分双工在CDMA系统中调度微微节点和从节点之间的传输。每个通信链路具有一定的最小带宽服务质量要求。准入控制问题是确定网络是否具有足够的资源来满足带宽要求。在这项工作中,提出了分布式算法,用于该录取控制问题,并给出了这些分布式算法的性能保证。如果每个节点具有某个全局参数的知识,则给出了一种流量进入控制的分布式算法,其具有与最佳,集中式算法相同的性能,即分布式算法给出了一组所必需的并且足够的条件流速是可行的。

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