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Modeling, Sizing, and Control of an Excitation Booster for Enhancement of Synchronous Generators Fault Ride-Through Capability: Experimental Validation

机译:用于增强同步发电机故障穿越能力的励磁助推器的建模,定型和控制:实验验证

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摘要

This paper proposes a complete approach to modeling, sizing, and controlling ultracapacitor-based excitation boosters (EB) aimed at improving the fault ride-through capability of synchronous generators equipped with bus-fed static excitation systems. The EB model is a simplified one suitable for transient stability simulations. Sizing is performed using transient stability simulations. It is aimed at maximizing the machine critical clearing time subject to machine rotor insulation and ultracapacitor features. The developed control system includes fast voltage sag and loss of synchronism detectors. The proposed approach can be used to design ultracapacitor-based EB in real-world applications. A dedicated test environment based on 10-kVA synchronous machine has been used to validate the proposed approach.
机译:本文提出了一种完整的方法,用于基于超级电容器的励磁增压器(EB)的建模,选型和控制,旨在提高配备有母线馈电静态励磁系统的同步发电机的故障穿越能力。 EB模型是简化的模型,适用于瞬态稳定性仿真。使用瞬态稳定性仿真执行大小调整。它旨在根据机器转子绝缘和超级电容器的特性,最大限度地延长机器的关键清理时间。开发的控制系统包括快速电压骤降和失步检测器。所提出的方法可用于在实际应用中设计基于超级电容器的EB。基于10 kVA同步机的专用测试环境已用于验证所提出的方法。

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