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Multi-constraint multi-objective QoS aware routing heuristics forquery driven sensor networks using fuzzy soft sets

机译:多约束多目标QoS意识到路由启发式使用模糊软套的驱动传感器网络

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In this paper, a fuzzy based distributed power aware routing scheme considering both energy and bandwidth constraints, especially for query driven applications in the asynchronous duty-cycled wireless sensor networks are devised. The proposed multi-constraint, multi-objective routing optimization approach under strict resource constraints guarantees reliability and fast data delivery along with efficient power management in spite of unreliable wireless links and limited power supply. In query driven applications, the request from the sink to the individual sensor node will be a broadcast message, whereas the individual sensor nodes replies back to sink as unicast messages. In the proposed work, the fuzzy approach and "A Star" algorithm are utilized for satisfying energy and bandwidth constraints to route the broadcast messages of the sink while querying all the sensor nodes in the network. Every node will be provided with a guidance list, which is used to decide the next best neighbor node with good route quality for forwarding the received multi-hop broadcast messages. The route quality of the every node is estimated with fuzzy rules based on the network parameters such as maximum remaining energy, minimum traffic load and better link quality to increase the network lifetime. The provision of overhearing the broadcast messages and acknowledgements within the transmission range minimizes the effort to search for the active time of nodes while routing the broadcast messages with asynchronous scheduling. Further, in the proposed work only the time slot of its nearest neighbor relay node (to which packets are to be forwarded) is learnt to reduce the number of message transmissions in the network. For the unicast message replies, the fuzzy membership function is modified and devised based on the routing metrics such as higher residual energy, minimum traffic loads and minimum hop count under energy and bandwidth constraints. Also, the multi-hop heuristic routing algorithm called Nearest Neighbor Tree is effectively used to reduce the number of neighbors in the guidance list that are elected for forwarding. This helps to increase the individual sensor node's lifetime, thereby maximizes the network lifetime and guarantees increased network throughput. The simulation results show that the proposed technique reduces repeated transmissions, decreases the number of transmissions, shortens the active time of the sensor nodes and increases the network lifetime for query driven sensor network applications invariant to total the number of sensor nodes and sinks in the network. The proposed algorithm is tested in a small test bed of sensor network with ten nodes that monitors the room temperature. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,设计了一种考虑能量和带宽约束的模糊的分布式功率感知路由方案,尤其是在异步核心无线传感器网络中的查询驱动应用程序。在严格的资源限制下提出的多约束,多目标路由优化方法保证了可靠性和快速数据传送以及现有的无线链路和有限的电源。在查询驱动的应用程序中,从接收器到各个传感器节点的请求将是广播消息,而各个传感器节点回复回载作为单播消息。在所提出的工作中,模糊方法和“星形”算法用于满足能量和带宽约束来路由接收器的广播消息,同时查询网络中的所有传感器节点。每个节点都将提供指导列表,该指导列表用于决定具有良好路由质量的下一个最佳邻居节点,用于转发接收的多跳广播消息。每个节点的路由质量都是基于网络参数的模糊规则估计,例如最大剩余能量,最小流量负载和更好的链路质量来增加网络寿命。在传输范围内提供过度地看过广播消息和确认最小化以在与异步调度路由广播消息的同时搜索节点的活动时间。此外,在所提出的工作中,仅学习其最近的邻居中继节点的时隙(要转发的分组)以减少网络中的消息传输的数量。对于单播消息回复,基于诸如较高的剩余能量,最小流量负载和能量和带宽约束下的最小跳数等路由度量来修改模糊隶属度函数。此外,称为最近邻居树的多跳启发式路由算法有效地用于减少所选用于转发的引导列表中的邻居的数量。这有助于增加各个传感器节点的生命周期,从而最大化网络生命周期并保证增加的网络吞吐量。仿真结果表明,该技术减少了重复传输,减少了传输的数量,缩短了传感器节点的活动时间,并增加了查询驱动的传感器网络应用程序的网络生命周期,以总共传感器节点的数量和接收器中的总数。 。所提出的算法在传感器网络的小型测试床上进行测试,其中十个节点监控室温。 (c)2016年Elsevier B.v.保留所有权利。

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