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A Study on Maximum Wind Power Penetration Limit in Island Power System Considering High-Voltage Direct Current Interconnections

机译:考虑高压直流互联的海岛电力系统最大风电渗透极限研究

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The variability and uncontrollability of wind power increases the difficulty for a power system operator to implement a wind power system with a high penetration rate. These are more serious factors to consider in small and isolated power systems since the system has small operating reserves and inertia to secure frequency and voltage. Typically, this difficulty can be reduced by interconnection with another robust power system using a controllable transmission system such as a high-voltage direct current (HVDC) system. However, the reliability and stability constraints of a power system has to be performed according to the HVDC system implementation. In this paper, the method for calculation of maximum wind power penetration in an island supplied by a HVDC power system is presented, and the operational strategy of a HVDC system is proposed to secure the power system reliability and stability. The case study is performed for the Jeju Island power system in the Korean smart grid demonstration area.
机译:风能的可变性和不可控制性增加了电力系统运营商实施具有高渗透率的风能系统的难度。在小型和隔离的电源系统中,这些是要考虑的更严重的因素,因为该系统具有较小的运行储备和惯性来确保频率和电压。通常,可以通过使用可控传输系统(例如高压直流(HVDC)系统)与另一个强大的电源系统互连来减少此困难。然而,必须根据HVDC系统的实现来执行电力系统的可靠性和稳定性约束。本文提出了一种高压直流输电系统在孤岛上最大风电渗透的计算方法,提出了一种高压直流输电系统的运行策略,以保证电力系统的可靠性和稳定性。该案例研究是针对韩国智能电网示范区的济州岛电力系统进行的。

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