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首页> 外文期刊>IEEE Transactions on Industry Applications >Zero-Energy Sag Correctors—Optimizing Dynamic Voltage Restorers for Industrial Applications
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Zero-Energy Sag Correctors—Optimizing Dynamic Voltage Restorers for Industrial Applications

机译:零能耗凹陷校正器—针对工业应用优化动态电压恢复器

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摘要

Plants and processes with a high level of industrial automation are most severely affected by short-duration power disturbances. Such plants are frequently fed from highly reliable utility grids, with measured reliability levels that are consistently in excess of 3-5 nines, yet face hours of unscheduled downtime resulting from short-duration voltage sags. Extensive data confirm that such plants experience, on average, 30 power disturbances annually, of which over 95% are short-duration disturbances lasting for no more than six cycles on average. Data also confirm that over 90% of these disturbances are asymmetrical faults. This paper shows a new approach to protecting industrial plants from power disturbances by building on the fact that it is prohibitively expensive to protect against all possible power disturbances and that the cost-effective protection is based on a statistical assessment of disturbances recorded and equipment susceptibility. This paper also shows that it is possible to use a new family of zero-energy sag correctors to realize protection against over 96 of all power disturbances. The design guidelines for such sag correctors, along with simulation and experimental results for the new dynamic voltage restorer system, are provided.
机译:具有高度工业自动化水平的工厂和过程受短期电源干扰的影响最大。此类工厂通常由高度可靠的公用电网供电,其可靠度水平始终超过3-5个九点,但由于短暂的电压骤降而面临数小时的计划外停机。大量数据证实,此类电厂平均每年遭受30次电源干扰,其中95%以上是短期干扰,平均持续不超过六个周期。数据还证实,这些干扰中有90%以上是非对称断层。本文基于以下事实,展示了一种保护工业工厂免受电力干扰的新方法:保护所有可能的电力干扰的成本非常高,而具有成本效益的保护是基于对记录的干扰和设备敏感性的统计评估。本文还表明,可以使用新的零能量骤降校正器系列来实现针对超过96种所有电源干扰的保护。提供了此类下垂校正器的设计指南,以及新型动态电压恢复器系统的仿真和实验结果。

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