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Power System Blackouts - Minimizing their Impact at Industrial Co-Generation Facilities

机译:电力系统停电 - 最大限度地减少其在工业公司的影响

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Investigations of recent blackouts indicate that the root cause of almost all major power system disturbances is voltage collapse rather than the underfrequency conditions prevalent in the blackouts of the 1960s and ''70s. This paper explores the nature of recent power system blackouts (2003 east coast, 1996 California and others) and explains why voltage is the leading edge indicator of impending power system collapse. The paper discusses the need to use voltage驴as well as frequency驴to decide when to separate from the utility system and transfer industrial system load to internal plant co-generation. Industrial customers have used voltage relays to determine that the utility circuit that supplies them has tripped. However, voltage relays at industrial sites have generally not been used to determine that the utility system lacks security and may collapse. This paper discusses the causes of voltage collapse as well as the design and security requirements for an undervoltage separation scheme. The paper addresses the current level of voltage load shedding on utilities'' systems, NERC (North Electric Reliability Council) requirements and coordination of industrial undervoltage separation with utility undervoltage load shedding.
机译:最近停电的调查表明,几乎所有主要电力系统干扰的根本原因是电压崩溃,而不是20世纪60年代的停电中普遍的低频率条件。本文探讨了最近电力系统停电的性质(2003年东海岸,1996年加州和其他),解释了为什么电压是即将到来的电力系统崩溃的前缘指示器。本文讨论了使用电压驴以及频率驴的需要决定何时与公用事业系统分离,并将工业系统负载转移到内部工厂同源。工业客户使用电压继电器来确定供应它们的实用电路。然而,工业部位的电压继电器通常不用于确定公用事业系统缺乏安全性,并且可能会崩溃。本文讨论了电压折叠的原因以及欠压分离方案的设计和安全要求。本文涉及公用事业欠电压分离的公用事业系统,NERC(NERCE(NERCH DERGESICE SOURCE)对电压负荷脱落的电压载荷水平及工业欠电压分离的协调。

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