The impact of power quality when high power pulsed DC and continuous AC loads are simultaneously operated on a MicroGrid testbed

J. Kelley, D. Wetz, J. Reed, I. Cohen, G. Turner, W. Lee
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引用次数: 12

Abstract

Technological advancements have been made in the field of electrochemistry leading to the development of energy storage devices that are more power dense than ever before. Coupled with their already modestly high energy density, this makes them well suited for use as the prime power source of many high pulsed and continuous power AC and DC loads operated within MicroGrid architectures. The energy storage devices of interest as well as the MicroGrid concept are both technologically immature. Their independent performance characteristics as well as the manner in which they can be integrated with one another need further research in order to understand their limitations and how they will perform in an extreme environment where high pulsed and continuous power loads are sourced simultaneously. With support from the US Office of Naval Research (ONR), a novel MicroGrid test-bed at UTA is being used to characterize how the power quality of different generation sources, including various low impedance energy storage technologies, solar panels, wind turbines, fuel cells, and fossil fuel based generators, are impacted when they are interconnected and used to source these types of high power loads. A description of the experimental setup and some experimental results obtained will be presented.
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微电网试验台上大功率脉冲直流和连续交流负载同时运行对电能质量的影响
电化学领域的技术进步导致了能量存储设备的发展,这些设备的功率密度比以往任何时候都要高。再加上它们已经适度的高能量密度,这使得它们非常适合用作微电网架构内运行的许多高脉冲和连续功率交流和直流负载的主要电源。我们感兴趣的储能设备和微电网概念在技术上都不成熟。它们的独立性能特征以及它们可以相互集成的方式需要进一步研究,以了解它们的局限性,以及它们在高脉冲和连续功率负载同时来源的极端环境中的表现。在美国海军研究办公室(ONR)的支持下,UTA正在使用一个新型微电网试验台来表征不同发电源的电能质量,包括各种低阻抗储能技术、太阳能电池板、风力涡轮机、燃料电池和化石燃料发电机,当它们相互连接并用于提供这些类型的高功率负载时,它们是如何受到影响的。本文将介绍实验装置和一些实验结果。
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