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Angle stability improvement by switching shunt reactors in mixed overhead-cable lines

机译:通过在混合架空电缆线路中切换并联电抗器来改善角度稳定性

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The growing sensibility to environment issues contributed in recent years to the erection of barriers in the construction of new overhead transmission lines. One of the solutions to overcome these problems is the use of cable lines for high (HV) and extra-high (EHV) voltage. However, the coexistence of overhead and cable lines in transmission systems, in the so called “mixed” lines, raises a number of issues regarding the behaviour of such systems both in transient and steady state. In particular, the definition of angle or transient stability of a system plays a strategic role and provides the actions of design and planning of the system. The purpose of this study is to investigate the angle stability of a system containing a mixed line: a control strategy of shunt reactors, located to compensate reactive power request of cable line, will be proposed as countermeasure to severe disturbance and then as improvement of power system stability. The analysis, based on detailed time simulations, will show that the timing of control actions of shunt reactors is critical for the success of emergency control: in particular, the size and the timing of reactive power involved in switching operation determine whether these control actions play positively or not in avoiding angular separation and system instability.
机译:近年来,人们对环境问题日益敏感,这为架空新的架空输电线路的建设设置了障碍。克服这些问题的解决方案之一是将电缆线用于高(HV)和超高(EHV)电压。然而,在所谓的“混合”线路中,传输系统中架空线和电缆线的共存提出了许多与此类系统在瞬态和稳态下的行为有关的问题。特别地,系统角度或瞬态稳定性的定义起着战略作用,并提供系统设计和规划的作用。这项研究的目的是研究包含混合线路的系统的角度稳定性:将并联电抗器的控制策略定位为补偿电缆线路的无功功率,将作为对严重干扰的对策,然后作为对功率的改进。系统稳定性。基于详细的时间模拟的分析将表明,并联电抗器的控制动作的时间对于紧急控制的成功至关重要:特别是,开关操作中涉及的无功功率的大小和时间决定了这些控制动作是否发挥作用避免或避免角度分离和系统不稳定方面的积极或不积极的考虑。

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