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Transient stability enhancement of multi-machine power system by novel braking resistor models

机译:新型制动电阻器模型提高多机电力系统的暂态稳定性

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Braking resistor (BR) is one of the effective methods to enhance the transient stability of synchronous generators. In this work, two new braking resistor models, one consisting of thyristor rectifier and the other consisting of a combination of diode rectifier and chopper, are pro posed, and their performance is compared with the existing thyristor controlled braking resistor. Comparison is ma de in terms of the speed indices, number of components used, heat loss, harmonics, and cost for each proposed model and the existing model. The effectiveness of the proposed methodology is tested through Matlab/Simulink simulations considering both balanced and unbalanced temporary faults in the IEEE-9 bus power grid system. Simulation results indicate that the transient stability performance of the proposed BR methods is comparable to that of the existing BR model. Moreover, the proposed models use a single unit of BR that might lead to cost reduction. Therefore, the proposed BR models can be considered as an alternative to the existing BR model for improving the transient stability of multi-machine power system.
机译:制动电阻器(BR)是增强同步发电机瞬态稳定性的有效方法之一。在这项工作中,提出了两种新的制动电阻器模型,一种由晶闸管整流器组成,另一种由二极管整流器和斩波器组成,并将其性能与现有晶闸管控制的制动电阻器进行比较。比较每个模型和现有模型的速度指标,使用的组件数量,热损失,谐波和成本等方面都是很重要的。考虑到IEEE-9总线电网系统中的平衡故障和非平衡临时故障,通过Matlab / Simulink仿真测试了所提出方法的有效性。仿真结果表明,所提出的BR方法的瞬态稳定性能与现有的BR模型相当。此外,建议的模型使用单个BR单元,可能会导致成本降低。因此,所提出的BR模型可以被认为是现有的BR模型的替代方案,以提高多机电力系统的暂态稳定性。

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