MR-MC网络的多信道分配与恢复算法

P. Ren
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引用次数: 1

摘要

随着计算机和无线技术的发展,无线收发器的成本和体积都大大降低。在传感器节点,特别是对性能要求较高的骨干节点上配置多个无线电是可行且必要的。作者在前人的研究中提出了一种基于嵌套元胞拓扑结构的mrm - mc (Multi-radio and multichannel)制造传感器网络。如何分配和恢复无线信道是一个关键问题。本文提出了一种信道分配与恢复算法,该算法将不同的信道分配给相邻的子网,以减少干扰。同时,远程子网间的信道复用将提高网络容量。此外,对干扰半径的计算使得该算法比跳跃模型更精确。OPNET仿真实验结果表明,该算法在MAC延迟、MAC吞吐量和网络有效性等方面都具有良好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple Channel Assignment and Recovery Algorithm for MR-MC Network
With the development of computer and wireless technology, cost and size of the wireless transceiver has decreased greatly. It is feasible and necessary to equip multiple radios on sensor nodes, especially on the backbone nodes having high demand on performance. The author proposed a MR-MC (Multi-radio and Multi-channel) manufacturing sensor network based on the nested cellular topology in previous research. How to assign and recover wireless channel is a key problem. In this paper, a channel assignment and recovery algorithm was proposed, which assigns different channels to the neighboring subnets to reduce interference. Meanwhile, the network capacity will be improved by channel multiplexing between the far-away subnets. In addition, the calculation of interference radius makes this algorithm be more accurate than hop-model. OPNET simulation experimental results show that it has good performance in the aspects of MAC delay, MAC throughput and network effectiveness.
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