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OSC-MAC: Duty cycle scheduling and cooperation in multi-hop wireless sensor networks

机译:OSC-MAC:多跳无线传感器网络中的占空比调度和协作

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An On-demand Scheduling Cooperative MAC protocol (OSC-MAC) is proposed to address the energy hole problem in multi-hop wireless sensor networks (WSNs). By combining an on-demand strategy and sensor cooperation intended to extend range, OSC-MAC tackles the spatio-temporal challenges for performing cooperative transmission (CT) in multi-hop WSN: cooperating nodes are neither on the same duty cycle nor are they in the same collision domain. We use orthogonal and pipelined duty-cycle scheduling, in part to reduce traffic contention, and devise a reservation-based wake-up scheme to bring cooperating nodes into temporary synchrony to support CT range extension. Compared with existing MAC protocols, our NS-2 simulations with REACT show that while we explicitly account for the overhead of CT and practical failures of control packets in dense traffic, OSC-MAC still gives almost 80% increase in network lifetime.
机译:提出了一种按需调度协作MAC协议(OSC-MAC),以解决多跳无线传感器网络(WSN)中的能量漏洞问题。通过结合按需策略和旨在扩大范围的传感器协作,OSC-MAC解决了在多跳WSN中执行协作传输(CT)的时空挑战:协作节点既不在同一占空比上,也不在相同的碰撞域。我们使用正交和流水线的占空比调度,部分是为了减少流量争用,并设计了一种基于预留的唤醒方案,以使协作节点处于临时同步状态以支持CT范围扩展。与现有的MAC协议相比,我们使用REACT进行的NS-2仿真表明,尽管我们明确考虑了CT开销和密集流量中控制数据包的实际故障,但OSC-MAC仍可将网络寿命延长近80%。

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