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On mitigating hotspots to maximize network lifetime in multi-hop wireless sensor network with guaranteed transport delay and reliability - Springer

机译:在多跳无线传感器网络中缓解热点问题以最大化网络寿命,并确保传输延迟和可靠性-Springer

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In wireless sensor networks (WSNs), sensor nodes close to the sink consume more energy than others because they are burdened with heavier relay traffic destined for the sink and trend to die early, forming hotspots or energy holes in WSNs. It has a serious impact on network lifetime. In this paper, three optimization algorithms are proposed to mitigate hotspots and prolong network lifetime for adaptive Mary Phase Shift Keying (MPSK) based wireless sensor networks while transport delay and reliability can be still guaranteed. Based on the insight gained into the relationship between nodal data load and energy consumption in different regions, the first algorithm (GlobalSame) can extend considerably the network lifetime by selecting the optimal nodal transmission radius r, bit error rate ε and transmission rate allocations in bits per symbol (BPS) τ. The second algorithm (RingSame) can further improve network lifetime by comparison to the GlobalSame algorithm, which by selecting different ε i and τ i for nodes in different regions under constraints of total BER and transport delay . While the third algorithm (NodeDiff) can further improve the network lifetime by adopting different BER ε and BPS τ parameters of the same node for data packets received according to its distance to the sink. Extensive simulation studies show that our algorithms do considerably prolong the network lifetime.
机译:在无线传感器网络(WSN)中,靠近接收器的传感器节点比其他节点消耗更多的能量,因为它们承受着发往接收器的较重中继流量的负担,并且趋向于早死,从而在WSN中形成热点或能量孔。它对网络寿命有严重影响。本文提出了三种优化算法来缓解热点并延长基于自适应玛丽相移键控(MPSK)的无线传感器网络的网络寿命,同时仍然可以保证传输延迟和可靠性。根据对节点数据负载与不同区域能耗之间关系的了解,第一种算法(GlobalSame)可以通过选择最佳节点传输半径r,误码率ε和以比特为单位的传输速率分配来显着延长网络寿命每个符号(BPS)τ。与GlobalSame算法相比,第二种算法(RingSame)可以进一步提高网络寿命,该算法通过在总BER和传输延迟的约束下为不同区域中的节点选择不同的εi和τi。而第三种算法(NodeDiff)可以通过根据节点到接收器的距离为接收的数据包采用相同节点的不同BERε和BPSτ参数来进一步提高网络寿命。大量的仿真研究表明,我们的算法确实可以大大延长网络寿命。

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