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Implementation of smart interface subsystems for enhanced control and communication in smartgrids

机译:实现智能接口子系统以增强智能电网中的控制和通信

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Rapid advances in the control and distribution of electricity (electrical energy) is causing change in micro-grid technology. Similarly, the constant increase in the number of consumers is changing the management and control of power distribution. This paradigm change in power networks is also influenced by the fact that the world is re-thinking how energy should be controlled in order to avoid energy loss and limit accidents. Unlike traditional grids, microgrids have a unique power operation of distribute energy without controlling and communication. The focus of this paper is the implementation of smart interface subsystems to enhance control and communication in microgrids. In order to perform this task, smart interfaces are designed so that the operations can be done seamlessly, the overall power cost is reduced with and failures and accidents are reduced. This paper demonstrates smart grid interfaces designed for different components of the grid and their implementation of a prototype with a PIC 16F887 microcontroller.
机译:电力(电能)的控制和分配的迅速发展正在引起微电网技术的变化。同样,用户数量的不断增加正在改变配电的管理和控制。电力网络的这种范式变化还受到以下事实的影响:世界正在重新考虑应如何控制能源,以避免能源损失和减少事故。与传统电网不同,微电网具有独特的动力运行方式,无需控制和通信即可分配能量。本文的重点是实现智能接口子系统,以增强微电网中的控制和通信。为了执行此任务,设计了智能接口,以便可以无缝地进行操作,降低了总体电源成本,并减少了故障和事故。本文演示了为网格的不同组件而设计的智能网格接口,以及它们如何通过PIC 16F887微控制器实现原型。

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