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首页> 外文期刊>IEEE transactions on mobile computing >Sleep and Wakeup Strategies in Solar-Powered Wireless Sensor/Mesh Networks: Performance Analysis and Optimization
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Sleep and Wakeup Strategies in Solar-Powered Wireless Sensor/Mesh Networks: Performance Analysis and Optimization

机译:太阳能无线传感器/网状网络的睡眠和唤醒策略:性能分析和优化

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摘要

A queuing analytical model is presented to investigate the performances of different sleep and wakeup strategies in a solar-powered wireless sensor/mesh network where a solar cell is used to charge the battery in a sensor/mesh node. While the solar radiation process (and, hence, the energy generation process in a solar cell) is modeled by a stochastic process (i.e., a Markov chain), a linear battery model with relaxation effect is used to model the battery capacity recovery process. Developed based on a multidimensional discrete-time Markov chain, the presented model is used to analyze the performances of different sleep and wakeup strategies in a sensor/mesh node. The packet dropping and packet blocking probabilities at a node are the major performance metrics. The numerical results obtained from the analytical model are validated by extensive simulations. In addition, using the queuing model, based on a game-theoretic formulation, we demonstrate how to obtain the optimal parameters for a particular sleep and wakeup strategy. In this case, we formulate a bargaining game by exploiting the trade-off between packet blocking and packet dropping probabilities due to the sleep and wakeup dynamics in a sensor/mesh node. The Nash solution is obtained for the equilibrium point of sleep and wakeup probabilities. The presented queuing model, along with the game-theoretic formulation, would be useful for the design and optimization of energy-efficient protocols for solar-powered wireless sensor/mesh networks under quality-of-service (QoS) constraints
机译:提出了一个排队分析模型,以研究太阳能供电的无线传感器/网格网络中不同睡眠和唤醒策略的性能,其中太阳能电池用于为传感器/网格节点中的电池充电。虽然通过随机过程(即马尔可夫链)对太阳辐射过程(以及因此在太阳能电池中的能量产生过程)进行建模,但是具有松弛效应的线性电池模型用于对电池容量恢复过程进行建模。该模型基于多维离散时间马尔可夫链开发,用于分析传感器/网格节点中不同睡眠和唤醒策略的性能。节点上的数据包丢弃和数据包阻塞概率是主要的性能指标。从分析模型获得的数值结果已通过广泛的仿真验证。另外,使用基于游戏理论的排队模型,我们演示了如何为特定的睡眠和唤醒策略获得最佳参数。在这种情况下,我们通过利用由于传感器/网状节点中的睡眠和唤醒动态而导致的数据包阻塞和数据包丢弃概率之间的折衷来制定讨价还价游戏。针对睡眠和唤醒概率的平衡点获得Nash解。提出的排队模型以及博弈论公式,对于服务质量(QoS)约束下的太阳能无线传感器/网格网络的节能协议的设计和优化将非常有用。

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