设计用于在低于50V直流电压下运行的家用电力系统的智能纳米电网的建议组件

Moshe C. Kinn
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引用次数: 18

摘要

已经提出了使用直流电压的必要性和优点,但是在非常低的直流电压下,系统受到电压损失的限制,并且比通常的负载电流高。讨论了引起负载电压降的一些参数及其对电网可用性的影响。系统需要一个动态的机制来控制每一个节点的电压,每当一个新的负载被连接或从系统中移除负载时。本文试图以智能电网、智能家电和交互式电源节点的形式使用智能家居技术来规避和缓解这些问题。提出了智能电网需要提供的要求和可能的组成部分。讨论了使用can总线或lin总线协议在直流电源上使用电力线通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proposed components for the design of a smart nano-grid for a domestic electrical system that operates at below 50V DC
The need and advantages of the use of direct current voltage for domestic usage has been presented, however at a very-low dc voltage, the system suffers from voltage loss constraints and higher than usual load currents. Some of the parameters that cause load-induced voltage drops and the resultant ramifications to the usability of the electric network are discussed. The system needs a dynamic mechanism to control the voltage at any node each and every time a new load is connected or a load is removed from the system. This paper seeks to use smart house technology in the form of a smart grid, intelligent appliances and interactive power nodes to circumvent and mitigate these problems. The requirements and possible components that the smart grid will need to provide, are set forth. The use of power line communications over the DC electricity mains using CAN-bus or LIN-bus protocols is discussed.
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