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An Adaptive Wake-Up-Interval to Enhance Receiver-Based Ps-Mac Protocol for Wireless Sensor Networks

机译:自适应唤醒间隔以增强基于接收器的无线传感器网络的Ps-Mac协议

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摘要

Many receiver-based Preamble Sampling Medium Access Control (PS-MAC) protocols have been proposed to provide better performance for variable traffic in a wireless sensor network (WSN). However, most of these protocols cannot prevent the occurrence of incorrect traffic convergence that causes the receiver node to wake-up more frequently than the transmitter node. In this research, a new protocol is proposed to prevent the problem mentioned above. The proposed mechanism has four components, and they are Initial control frame message, traffic estimation function, control frame message, and adaptive function. The initial control frame message is used to initiate the message transmission by the receiver node. The traffic estimation function is proposed to reduce the wake-up frequency of the receiver node by using the proposed traffic status register (TSR), idle listening times (ILTn, ILTk), and “number of wake-up without receiving beacon message” (NWwbm). The control frame message aims to supply the essential information to the receiver node to get the next wake-up-interval (WUI) time for the transmitter node using the proposed adaptive function. The proposed adaptive function is used by the receiver node to calculate the next WUI time of each of the transmitter nodes. Several simulations are conducted based on the benchmark protocols. The outcome of the simulation indicates that the proposed mechanism can prevent the incorrect traffic convergence problem that causes frequent wake-up of the receiver node compared to the transmitter node. Moreover, the simulation results also indicate that the proposed mechanism could reduce energy consumption, produce minor latency, improve the throughput, and produce higher packet delivery ratio compared to other related works.
机译:已经提出了许多基于接收器的前导采样媒体访问控制(PS-MAC)协议,以为无线传感器网络(WSN)中的可变流量提供更好的性能。但是,这些协议中的大多数协议都不能防止发生错误的流量收敛,该流量收敛会导致接收器节点比发送器节点更频繁地唤醒。在这项研究中,提出了一种新的协议来防止上述问题。所提出的机制具有四个组成部分,分别是初始控制帧消息,流量估计功能,控制帧消息和自适应功能。初始控制帧消息用于启动接收方节点的消息传输。通过使用建议的流量状态寄存器(TSR),空闲侦听时间(ILTn,ILTk)和“不接收信标消息的唤醒次数”,提出了流量估计功能,以降低接收器节点的唤醒频率( NWwbm)。控制帧消息旨在使用所提出的自适应功能向接收机节点提供基本信息,以获取发射机节点的下一个唤醒间隔(WUI)时间。接收器节点使用提出的自适应功能来计算每个发射器节点的下一个WUI时间。基于基准协议进行了一些模拟。仿真结果表明,与发送器节点相比,所提出的机制可以防止不正确的流量收敛问题,该问题会引起接收器节点的频繁唤醒。此外,仿真结果还表明,与其他相关工作相比,该机制可减少能耗,产生较小的等待时间,提高吞吐量并产生更高的分组传送率。

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