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An energy-efficient routing protocol with controllable expected delay in duty-cycled wireless sensor networks

机译:占空比无线传感器网络中具有可控制的预期延迟的节能路由协议

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Low duty cycled scheduling can largely prolong the lifetime of a wireless sensor network (WSN) but also brings longer end-to-end (E2E) delivery delay. In this paper, our design objective is to pursue the near minimum E2E energy consumption subject to a desired success ratio that the E2E delay is below a delay bound. Accordingly, we design a Markov decision process based geographic routing protocol such that each relay node currently holding a packet makes localized forwarding decision on continuing waiting or transmitting immediately to the so far best forwarder candidate based only on local network state information. Simulation results show that the designed protocol can achieve expected success ratio subject to given delay bound and also high energy use efficiency.
机译:低循环调度可以很大程度上延长无线传感器网络(WSN)的寿命,而且还带来了更长的端到端(E2E)输送延迟。在本文中,我们的设计目标是追求近乎最小的E2E能量消耗,以至于E2E延迟低于延迟约束的所需成功比率。因此,我们设计了基于马尔可夫决策过程的地理路由协议,使得当前保持分组的每个中继节点使得仅基于局部网络状态信息基于延续的等待或立即发送到到达最佳转发器候选的本地化转发决定。仿真结果表明,设计的协议可以达到预期的成功比,以给定延迟绑定和高能量利用效率。

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