A Non-cooperative Power Control Algorithm for Wireless Ad Hoc and Sensor Networks

Qiang Sun, Xian-quan Zeng, Niansheng Chen, Zongwu Ke, R. ur Rasool
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引用次数: 14

Abstract

In mobile ad hoc & sensor networks, power control is an efficient way to improve the efficiency of energy. However, it will also produce negative influence on many aspects of the networks such as the network connectivity, delay and network capacity. In this paper, proposed related energy control mechanisms for ad hoc & sensor networks are introduced. Considering the QoS requirement such as maximum network capacity, minimum network radius and guaranteed network connectivity, a power control model based on non-cooperative game theory is given. And a distributed non-cooperative game algorithm to power control for ad hoc & sensor networks is presented. The existing and uniqueness of Nash equilibrium for the algorithm is also proved in this paper. Finally simulation experiments are implemented to verify the algorithm. The results show that the algorithm is efficient and has a good integrated performance.
无线自组网和传感器网络的非合作功率控制算法
在移动自组网和传感器网络中,功率控制是提高能量利用效率的有效途径。但是,它也会对网络的连通性、时延、网络容量等诸多方面产生负面影响。本文介绍了针对自组网和传感器网络提出的相关能量控制机制。考虑最大网络容量、最小网络半径和保证网络连通性等QoS要求,提出了一种基于非合作博弈论的功率控制模型。提出了一种分布式非合作博弈算法,用于自组网和传感器网络的功率控制。并证明了该算法的纳什均衡的存在性和唯一性。最后通过仿真实验对算法进行了验证。结果表明,该算法效率高,具有良好的综合性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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