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Transition Process and Influencing Factors of AC Transient Overvoltage Subject to HVDC Disturbances

机译:高压直流输电干扰下交流暂态过电压的过渡过程及影响因素

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The AC overvoltage at the sending is an important factor to limit HVDC capacity. The previous research typically focuses on the static voltage characteristics, while this paper further studies the influence of the system-side dynamics on the AC transient overvoltage. Firstly, the voltage transition process subject a disturbance is analyzed to be divided into the electromagnetic transient process and electromechanical transient process. The transition on the equivalent impedance of the generators leads to a gradual increase of the overvoltage. The relationship between power angle and voltage is also deduced based on the Thevenin equivalent. Secondly, based on the electromagnetic transient transition process, the overvoltage mechanism is elaborated under the block, commutation failure, restarting, and short circuit faults. Meanwhile, different locations where DC is connected are considered to highlight the influence of the power distribution and inertia on the transient overvoltage. Finally, it is concluded that static voltage characteristics can give the initial value of the overvoltage, however, it cannot reflect the transition process of overvoltage. The time scale of the overvoltage involves the coupling of electromagnetic and electromechanical processes, and the influencing factors of overvoltage under different conditions should fully be considered.
机译:发送端的交流过电压是限制HVDC容量的重要因素。先前的研究通常集中在静态电压特性上,而本文进一步研究了系统侧动态特性对交流瞬态过电压的影响。首先,对受干扰的电压过渡过程进行了分析,将其分为电磁瞬态过程和机电瞬态过程。发电机等效阻抗的过渡导致过电压的逐渐增加。功率角和电压之间的关系也基于戴维南等效值推导。其次,基于电磁暂态过渡过程,详细阐述了过压机理,换向失败,重启,短路故障等。同时,考虑了连接DC的不同位置,以突出功率分布和惯性对瞬态过电压的影响。最后得出结论,静态电压特性可以给出过电压的初始值,但是它不能反映过电压的过渡过程。过电压的时标涉及电磁和机电过程的耦合,应充分考虑不同条件下过电压的影响因素。

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