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Variable-Range Transmission Power Control in Wireless Ad Hoc Networks

机译:无线自组织网络中的可变范围传输功率控制

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In this paper, we investigate the impact of variable-range transmission power control on the physical and network connectivity, on network capacity, and on power savings in wireless multihop networks. First, using previous work by Steele (1988), we show that, for a path attenuation factor a = 2, the average range of links in a planar random network of A m2 having n nodes is ~aradicA1. We show that this average range is approximately half the range obtained when common-range transmission control is used. Combining this result and previous work by Gupta and Kumar (2000), we derive an expression for the average traffic carrying capacity of variable-range-based multihop networks. For a = 2, we show that this capacity remains constant even when more nodes are added to the network. Second, we derive a model that approximates the signaling overhead of a routing protocol as a function of the transmission range and node mobility for both route discovery and route maintenance. We show that there is an optimum setting for the transmission range, not necessarily the minimum, which maximizes the capacity available to nodes in the presence of node mobility. The results presented in this paper highlight the need to design future MAC and routing protocols for wireless ad hoc and sensor networks based, not on common-range which is prevalent today, but on variable-range power control
机译:在本文中,我们研究了可变范围传输功率控制对物理和网络连接性,网络容量以及无线多跳网络中的功率节省的影响。首先,使用斯蒂尔(1988)的先前工作,我们表明,对于路径衰减因子a = 2,具有n个节点的A m2平面随机网络中链接的平均范围为〜aradicA / n1。我们表明,该平均范围大约是使用通用范围变速器控制时获得的范围的一半。将这一结果与Gupta和Kumar(2000)的先前工作相结合,我们得出了基于变程多跳网络的平均流量承载能力的表达式。对于a = 2,我们表明即使将更多节点添加到网络,此容量也保持不变。其次,我们推导出一个模型,该模型将路由协议的信令开销作为路由发现和路由维护的传输范围和节点移动性的函数进行近似。我们表明,存在传输范围的最佳设置,而不一定是最小值,这在存在节点移动性的情况下最大化了节点可用的容量。本文提出的结果强调,有必要为无线ad hoc和传感器网络设计未来的MAC和路由协议,而不是基于今天流行的通用范围,而是基于可变范围的功率控制

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