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A thermal-electric decoupling approach to reduce the wind power tripping rate

机译:一种热电去耦方法,以降低风电跳闸率

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With the rapid growth of wind power, due to the limit of the system peak load regulation capability, wind turbines were often tripped to guarantee power system security during heating periods in China's north provinces. This paper proposes a thermal-electric decoupling scheme for reduction of wind power trippings. In this study, an outside thermal source is introduced to absorb sufficient wind power and to provide heating services. Thus, the heating output of co-generators could be reduced to lower the minimum forced power of co-generators, which further increases the system peak load regulation capability. An approach is proposed to calculate the wind power tripping rate by using Monte Carlo simulation technique. Case studies have been conducted to demonstrate the effectiveness of the proposed methods, and the results show that the proposed approach could relieve the wind power tripping rate and improve the ability of power system to accommodate wind power.
机译:随着风力发电的快速增长,由于系统峰值负荷调节能力的限制,风力涡轮机经常跳闸以保证中国北方各省在供暖期间的电力系统安全。本文提出了一种热电去耦方案,以减少风电跳闸。在这项研究中,引入了外部热源来吸收足够的风能并提供供暖服务。因此,可以减小热电联产发电机的热量输出,以降低热电联产发电机的最小强制功率,从而进一步提高系统的峰值负荷调节能力。提出了一种利用蒙特卡罗模拟技术计算风电跳闸率的方法。通过案例研究证明了所提方法的有效性,结果表明所提方法可以缓解风电跳闸率,提高电力系统适应风电的能力。

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