无线多媒体传感器网络的最大无线电不相交多路径路由

M. Maimour
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引用次数: 101

摘要

在无线传感器网络中,带宽是多媒体应用的宝贵资源之一。为了获得更大的带宽,多径路由是一种适当的解决方案,前提是尽量减少径间干扰。在本文中,我们讨论了无线多媒体传感器网络中的干扰路径问题,并考虑了会话内和会话间的干扰。我们的主要目标是通过非干扰路径为多媒体应用提供必要的带宽,同时增加网络寿命。为此,我们采用增量方法,对于给定的会话,一次只构建一条路径。当需要时,通常在拥塞或带宽不足的情况下,会建立额外的路径。干扰感知和节能是通过切换处于被动状态的传感器节点子集来实现的,在被动状态下,它们不参与路由过程。尽管我们采用的增量方法带来了路由开销,但我们的模拟表明,这可以通过总体实现吞吐量和每个正确接收的数据包消耗的能量来补偿,特别是对于相对较长的会话(如多媒体会话)。这主要是因为少量的非干扰路径比大量的干扰路径具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximally radio-disjoint multipath routing for wireless multimedia sensor networks
In wireless sensor networks, bandwidth is one of precious resources to multimedia applications. To get more bandwidth, multipath routing is one appropriate solution provided that inter-path interferences are minimized. In this paper, we address the problem of interfering paths in the context of wireless multimedia sensor networks and consider both intra-session as well as inter-session interferences. Our main objective is to provide necessary bandwidth to multimedia applications through non-interfering paths while increasing the network lifetime. To do so, we adopt an incremental approach where for a given session, only one path is built at once. Additional paths are built when requi red, typically in case of congestion or bandwidth shortage. Interference awareness and energy saving are achieved by switching a subset of sensor nodes in a passive state in which they do not take part in the routing process. Despite the routing overhead introduced by the incremental approach we adopt, our simulations show that this can be compensated by the overall achieved throughput and the amount of consumed energy per correctly received packet especially for relatively long sessions such as multimedia ones. This is mainly due to the fact that a small number of non-interfering paths allows for better performances than a large number of interfering ones.
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