High speed disconnect switch with piezoelectric actuator for medium voltage direct current grids

M. Bosworth, D. Soto, R. Agarwal, M. Steurer, T. Damle, L. Graber
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引用次数: 8

Abstract

With the future adoption of intermittent sources of power generation and the need for dynamic and reconfigurable power systems, a shift in power system design leans towards power electronics based, fault current limited distribution systems. Design requirements for breakers will focus on fast operation to handle dynamic changes, rather than breaking large magnitude fault currents, as in conventional breakers. High-speed disconnect switches are expected to play a vital role in future DC shipboard power systems. Previous work on an NSF funded project resulted in the development of a 200 A, 15 kV fast mechanical disconnect switch for AC applications. This paper explores the use of the same type of technology for DC power systems, describes the differences and identifies the research and development work needed to make the technology fit for shipboard applications.
中压直流电网用压电致动器高速断开开关
随着未来间歇性发电的采用以及对动态和可重构电力系统的需求,电力系统设计的转变倾向于基于电力电子的故障电流限制配电系统。断路器的设计要求将侧重于快速运行以应对动态变化,而不是像传统断路器那样断开大幅度的故障电流。高速断开开关将在未来的船舶直流电源系统中发挥重要作用。以前在NSF资助的项目上的工作导致了交流应用的200a, 15kv快速机械断开开关的开发。本文探讨了在直流电源系统中使用相同类型的技术,描述了它们之间的差异,并确定了使该技术适合船舶应用所需的研究和开发工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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