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Battery-Friendly Packet Transmission Algorithms for Wireless Sensor Networks

机译:无线传感器网络的电池友好型分组传输算法

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摘要

The core problem with nodes of wireless sensor networks is the limited charge capacity for the power-operated battery. The main concern of this paper is how to extend the battery's lifetime. According to the characteristics and functionality of sensor nodes, the sensor applications are categorized into three distinct types, i.e., the hard real-time applications, the soft real-time applications, and the periodic applications. For the hard real-time applications, a battery-friendly lazy packet scheme is designed to draw smoother and lower current for minimizing battery charge consumption. A battery-friendly local optimization scheme with slack time is exploited and evaluated for the soft real-time applications. For the periodic applications, a battery-aware task–scheduling algorithm is developed, which reschedules tasks of sensor nodes to achieve the battery friendly discharge profile. The simulation results show that the three battery-friendly algorithms perform better in extending lifetime of battery-operated sensor nodes and minimizing battery charge consumption.
机译:无线传感器网络的节点的核心问题是电动电池的充电容量有限。本文的主要关注点是如何延长电池的使用寿命。根据传感器节点的特性和功能,将传感器应用程序分为三种不同的类型,即硬实时应用程序,软实时应用程序和周期性应用程序。对于硬实时应用,电池友好型惰性数据包方案旨在吸收更平滑和更低的电流,以最大程度地减少电池电荷消耗。对于软实时应用程序,开发并评估了具有空闲时间的电池友好型本地优化方案。对于周期性应用,开发了一种可感知电池的任务调度算法,该算法可重新调度传感器节点的任务,以实现对电池友好的放电曲线。仿真结果表明,这三种对电池友好的算法在延长电池供电的传感器节点的使用寿命以及最大程度地减少电池电荷消耗方面表现出更好的性能。

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