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Time Synchronization of Pulse-Coupled Oscillators for Smart Grids

机译:脉冲耦合振荡器用于智能电网的时间同步

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Wireless sensor networks has been widely recognized as a promising technology in smart grids. The sensors are installed on the critical power grid equipments to acquire the essential grid datas such as voltage, current and system frequency. And the data acquisition in smart grids is particularly time sensitive: the accurate timestamp of information is required from the sensors so that the absolute time of acquisition can be determined. Due to the crystal manufacturing tolerance and working conditions, the clocks of sensor nodes oscillators are non-identical and drifting. Thus, the key enabling technology time synchronization, aiming to provide a common sense of timing, is required in distributed smart grids sensor networks. Inspired by Peskin's model for self-synchronization of cardiac pacemaker, the pulse-coupled oscillators is implemented to the wireless sensor nodes to ensure the wireless networks of smart grids be able to achieve a common timescale, it is also suitable for distributed deployment in large-scale smart grids. In addition, the intensive simulations of three kinds of single-hop wireless sensor networks have been carried out to evaluate the performance of linear pulse-coupled non-identical oscillators.
机译:无线传感器网络已被广泛被认为是智能电网的有希望的技术。传感器安装在临界电网设备上,以获取电压,电流和系统频率等基本网格数据。智能电网中的数据采集特别敏感:从传感器需要准确的时间戳,从而可以确定采集的绝对时间。由于晶体制造公差和工作条件,传感器节点振荡器的时钟是非相同的和漂移的。因此,在分布式智能电网传感器网络中需要旨在提供常规时间的键能够提供常见的定时感。由Peskin的心脏起搏器自同步模型启发,脉冲耦合振荡器被实现为无线传感器节点,以确保智能电网的无线网络能够实现常见的时间表,它也适用于大型分布式部署 - 规模智能电网。此外,已经进行了三种单跳无线传感器网络的密集模拟,以评估线性脉冲耦合非相同振荡器的性能。

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