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VSC HVDC Capacitance Estimation for Inertia Emulation Control in Jeju Island Power System

机译:济州岛电力系统惯性仿真控制的VSC HVDC电容估计

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Renewable energy is attracting attention as a future energy source and the energy mix of the power system is changing from the conventional fuel and nuclear energy to the renewable energy. As a result, uncertainty and volatility are increasing in the power system operation. To cope with the volatility and uncertainty, the flexibility and efficiency are required in the power system which are the controllable device can provide. Therefore, various functions are required for controllable device such as High Voltage Direct Current(HVDC), Static Var Compensator(SVC), Static Synchronous Compensator(STATCOM) and Energy Storage System(ESS). Inertia Emulation Control(IEC) has been studied in HVDC to improve stability of the power system. In Jeju island, Voltage Source Converter(VSC) HVDC is under planning and the rated capacity of the DC system corresponds approximately 20% of peak load. Thus, the stability of the island power system can be improved by control of the HVDC. In this paper, the system parameters of the DC system for improving the stability of the Jeju system by IEC are calculated from the energy aspect. The amount of energy change was calculated for the contingency which the frequency fluctuation causes the under frequency relay operation. Based on the amount, the energy compensation amount to maintain the frequency of the DC voltage variation.
机译:可再生能源作为未来的能源引起关注,电力系统的能量混合从传统的燃料和核能变化到可再生能源。结果,在电力系统操作中不确定性和波动性在增加。为了应对波动性和不确定性,电力系统中需要的灵活性和效率可以提供。因此,可控设备需要各种功能,例如高压直流电流(HVDC),静态VAR补偿器(SVC),静态同步补偿器(Statcom)和储能系统(ESS)。 HVDC研究了惯性仿真控制(IEC)以提高电力系统的稳定性。在济州岛,电压源转换器(VSC)HVDC正在规划中,DC系统的额定容量对应于峰值负荷的大约20%。因此,通过控制HVDC可以提高岛电力系统的稳定性。本文从能量方面计算了用于改善IEC的DC系统的系统参数,用于改善IEC的JEJU系统的稳定性。计算能量变化的频率波动导致在频率继电器操作下的应急量计算。基于量,能量补偿量保持直流电压变化的频率。

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