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A Bayesian based energy aware routing algorithm for mobile WSNs

机译:一种基于贝叶斯的移动WSN的能量意识路由算法

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Energy conservation is crucial in Wireless Sensor Networks (WSNs) for prolonging sensor node's life. This research attempts to gain benefits of Bayesian classifier through development of a Bayesian Classifier-Based Energy Aware Routing algorithm (BBEAR) for mobile WSNs. Through implementing a Bayesian classifier for routing process, a superior routing algorithm is designed with an intelligent node message rebroadcast decision. This paper discusses the proposed algorithm design and presents a comparison of its performance with flooding technique. BBEAR workflow is described, along with its classifier mechanism that allows the message routing judgment by each sensor node to be based on several node's and message's classifying attributes. In contrast to other routing schemes developed for WSN, BBEAR algorithm incorporates several node attributes, including: remaining energy that the nodes have, distance to the sink, number of messages being queued, node's success rate, delay of the received message, as well as the number of message duplicates received by the node. The BBEAR performance is also discussed and evaluated in terms of various measures such as: throughput, number of duplicates received, average delay, and the lifetime of the nodes. The simulation study of the proposed algorithm shows its superiority over flooding: as it provides 15% gain in message throughput, four times reduction of duplicates, and gives an extension of 60% nodes' lifetime while still maintaining the delay and delay jitter at low levels.
机译:节能在无线传感器网络(WSNS)中至关重要,用于延长传感器节点的寿命。该研究通过开发用于移动WSN的基于贝叶斯分类器的能量感知路由算法(BBER)来利用贝叶斯分类器的益处。通过实现用于路由过程的贝叶斯分类器,卓越的路由算法设计有智能节点消息reBroadcast决策。本文讨论了所提出的算法设计,并提出了利用洪水技术的性能比较。描述BBEAR工作流程,以及其分类机制,允许每个传感器节点的消息路由判断基于若干节点和消息的分类属性。与为WSN开发的其他路由方案形成对比,BBEAR算法包含多个节点属性,包括:节点具有剩余的能量,距离接收器的距离,排队的消息数量,节点的成功率,收到的消息的延迟,以及所接收的消息的延迟,以及所接收的消息的延迟节点接收的消息重复数量。在各种措施中还讨论和评估了BBEAR性能,例如:吞吐量,收到的重复次数,平均延迟和节点的使用寿命。所提出的算法的仿真研究显示了其在洪水上的优越性:由于它在消息吞吐量中提供了15%的增益,减少了重复项的四倍,并给出了60%节点的寿命,同时仍然保持低级延迟和延迟抖动。

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