Uninterruptible power supply systems: nonlinear electrical load compatibility

M. M. Bhanoo
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引用次数: 1

Abstract

The mass proliferation of computers and distributed control systems in process control rooms and solid-state device driven machines in plants has resulted in increased electrical spikes, over/under-voltages, outages, and higher rate of wear and tear on equipment. The underlying cause of these phenomena is that nonlinear electrical loads are being used more frequently in the control room and plant environment. The uninterruptible power supply (UPS) has been the mainstay of power solutions for conditioning and backup in the industrial environment. The traditional UPS design for high-performance, high-reliability applications has been the application of the double conversion topology, in single-phase output configuration, using passive output harmonic filters to mitigate the ill-effects of nonlinear loads on traditional UPS systems. Unfortunately, passive output harmonic filters are expensive, require additional foot-print and cannot adapt themselves to changing load environment. In the context of modern process control plants and current economic conditions, passive filters are ineffective in delivering the lowest cost, smallest footprint solution. This paper describes the latest advances in the design of single-phase UPS systems incorporating real-time, dynamic digital feedback control to accommodate nonlinear loads.
不间断电源系统:非线性电气负载兼容性
过程控制室中计算机和分布式控制系统的大规模扩散以及工厂中固态设备驱动的机器导致了电气峰值、过电压/欠电压、停电和设备磨损率的增加。造成这些现象的根本原因是在控制室和工厂环境中越来越频繁地使用非线性电气负荷。不间断电源(UPS)已成为工业环境中调节和备用电源解决方案的主流。传统的高性能、高可靠性应用的UPS设计一直是双转换拓扑的应用,在单相输出配置中,使用无源输出谐波滤波器来减轻非线性负载对传统UPS系统的不良影响。不幸的是,无源输出谐波滤波器价格昂贵,需要额外的占地面积,不能适应不断变化的负载环境。在现代过程控制工厂和当前经济条件的背景下,无源过滤器在提供成本最低、占地面积最小的解决方案方面是无效的。本文介绍了单相UPS系统设计的最新进展,该系统采用实时动态数字反馈控制来适应非线性负载。
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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