Clustering for transmission range control and connectivity assurance for self configured ad hoc networks

K. Manousakis, J. Baras
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引用次数: 16

Abstract

Ad hoc networks have been the new networking technology trend because of their promising characteristics. These characteristics fit better the requirements of today's army and the needs of today's commercial world. Most of the applications that have been referred in the bibliography assume devices that are of finite power. The latter is true because of the existing technology (web enabled cell phones, PDAs, laptops, PPCs). The goal for ad hoc networks is to accommodate light weight, battery powered portable devices. Because of the finite power limitation, we have to design efficient ways to use the existing power. A first step towards efficient utilization of power is to eliminate its unnecessary usage wherever possible. For a networking device, significant part of power is consumed for communications and more specifically for transmissions. In this work we focus on eliminating the transmission power consumed into the network subject to the network's connectivity. The assurance of network connectivity is essential in this problem since the usage of limited transmission power from the nodes may result in a partitioned network. We provide solutions to the efficient usage of transmission power by clustering the nodes based on their proximity and ensuring the intracluster and intercluster connectivity of the network. The algorithms presented in this paper achieve their objective as the collected results from their simulation show.
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自配置自组织网络的传输范围控制和连通性保证的聚类
自组织网络以其独特的特点成为新的网络技术发展趋势。这些特点更符合当今军队的要求和当今商业世界的需要。参考书目中提到的大多数应用都假定设备功率有限。后者是正确的,因为现有的技术(支持网络的手机、pda、笔记本电脑、ppc)。自组织网络的目标是适应重量轻、电池供电的便携式设备。由于有限的功率限制,我们必须设计有效的方法来利用现有的功率。有效利用电力的第一步是尽可能消除不必要的使用。对于网络设备来说,很大一部分功率用于通信,更具体地说,用于传输。在这项工作中,我们的重点是消除受网络连通性影响而消耗到网络中的传输功率。在这个问题中,网络连通性的保证是至关重要的,因为使用有限的节点传输功率可能导致网络分区。我们提供了有效利用传输功率的解决方案,根据节点的接近度对节点进行集群,并确保网络的集群内和集群间的连通性。仿真结果表明,本文提出的算法达到了预期目标。
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