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Performance Evaluation of a Synchronization Protocol for Rechargeable Sensor Networks

机译:充电传感器网络同步协议的性能评估

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Rechargeable sensor networks have been studied as candidates for next-generation wireless sensor networks. However, rechargeable sensor nodes cannot always communicate with other nodes, because they typically do not receive a stable supply of power. To cope with this problem, we propose a dynamic synchronization protocol that allows the synchronization of transmission and reception in rechargeable sensor networks. The protocol has three phases of synchronization. In the first phase, the charge rate is sent to the sink by piggybacking onto the sensor data. In the second phase, the minimum charge rate is propagated from the sink node. All nodes receiving the minimum charge rate can calculate the length of the transmission cycle. In the third phase, each node rearranges its own cycle length by inserting the sleep time and synchronizes the transmission time by changing the sleep time. The sleep time is changed according to the sensor data reception from the backward nodes. The simulation results confirmed the effectiveness of the proposed method.
机译:已经研究了可充电传感器网络作为下一代无线传感器网络的候选者。但是,可充电传感器节点无法始终与其他节点通信,因为它们通常无法获得稳定的电源。为了解决这个问题,我们提出了一种动态同步协议,该协议允许可充电传感器网络中的传输和接收同步。该协议具有三个同步阶段。在第一阶段,通过piggy带到传感器​​数据上,将充电速率发送到接收器。在第二阶段,最小充电速率从接收节点传播。接收最小充电率的所有节点都可以计算传输周期的长度。在第三阶段,每个节点通过插入睡眠时间来重新排列其自己的周期长度,并通过更改睡眠时间来同步传输时间。睡眠时间根据从后退节点接收到的传感器数据而改变。仿真结果证实了该方法的有效性。

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