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A Novel Protective Scheme to Protect Small-Scale Synchronous Generators Against Transient Instability

机译:保护小型同步发电机免受瞬态不稳定影响的新型保护方案

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Installation of small generators in distribution networks has been increased recently due to its various benefits. One of the important issues related to these distributed generators is the effect of system faults on their transient stability. Due to the low inertia constant of the small-scale generators and the slow operation of the distribution networks' protective relays, transient instability is quite probable for these generators. In this paper, the dynamic behavior of small-scale synchronous generators to the system faults and its sensitivity to the system parameters are investigated. Then, a practical protective method using the existing overcurrent and undervoltage relays is proposed, and its advantages and disadvantages are pointed out. Next, based on the obtained information from sensitivity analysis, a novel protective relay is proposed to protect the generators against instability. The proposed relay uses a generator active power to determine the appropriate time to disconnect the generator. Simulation results confirm the secure operation and robustness of the proposed relay against system transients. In addition, the proposed algorithm complies with the generator fault-ride-through requirements.
机译:由于其各种优点,最近在配电网中安装了小型发电机。与这些分布式发电机相关的重要问题之一是系统故障对其暂态稳定性的影响。由于小型发电机的惯性常数低,并且配电网的保护继电器运行缓慢,因此这些发电机极有可能出现暂态不稳定。本文研究了小型同步发电机对系统故障的动态行为及其对系统参数的敏感性。然后,提出了一种利用现有的过电流和欠电压继电器的实用保护方法,并指出了其优缺点。接下来,基于从灵敏度分析中获得的信息,提出了一种新型的保护继电器,以防止发电机不稳定。建议的继电器使用发电机有功功率来确定断开发电机的合适时间。仿真结果证实了所提出的继电器针对系统瞬变的安全操作和鲁棒性。另外,所提出的算法符合发电机故障穿越要求。

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