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A Game Theory Based Strategy for Reducing Energy Consumption in Cognitive WSN

机译:基于博弈论的认知无线传感器网络中降低能耗的策略

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Wireless sensor networks (WSNs) are one of the most important users of wireless communication technologies in the coming years and some challenges in this area must be addressed for their complete development. Energy consumption and spectrum availability are two of the most severe constraints of WSNs due to their intrinsic nature. The introduction of cognitive capabilities into these networks has arisen to face the issue of spectrum scarcity but could be used to face energy challenges too due to their new range of communication possibilities. In this paper a new strategy based on game theory for cognitive WSNs is discussed. The presented strategy improves energy consumption by taking advantage of the new change-communication-channel capability. Based on game theory, the strategy decides when to change the transmission channel depending on the behavior of the rest of the network nodes. The strategy presented is lightweight but still has higher energy saving rates as compared to noncognitive networks and even to other strategies based on scheduled spectrum sensing. Simulations are presented for several scenarios that demonstrate energy saving rates of around 65% as compared to WSNs without cognitive techniques.
机译:无线传感器网络(WSN)是未来几年无线通信技术最重要的用户之一,因此,对于它们的全面发展,必须解决该领域的一些挑战。由于其固有性质,能耗和频谱可用性是WSN的两个最严格的限制。将认知能力引入这些网络已经引起了频谱稀缺的问题,但是由于它们具有新的通信可能性,因此也可以用来应对能源挑战。本文讨论了一种基于博弈论的认知无线传感器网络新策略。提出的策略通过利用新的变更通信通道功能来改善能耗。基于博弈论,该策略根据其余网络节点的行为来决定何时更改传输通道。提出的策略是轻量级的,但与非认知网络甚至是基于计划频谱感知的其他策略相比,仍具有更高的节能率。针对几种场景进行了仿真,与没有认知技术的无线传感器网络相比,节能率达到了65%左右。

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