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Determination of Maximum Wind Power Penetration in a Isolated Island System by Considering Spinning Reserve

机译:考虑纺纱储备来确定孤岛系统中最大风力渗透

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The abundant wind resources in Penghu area, which features the impressive capacity factor up to 45%, attract the authority to build more wind turbines in the diesel-based power system. However, due to the instability of the wind turbine output, the high penetration of wind power in the system may affect relatively the system's power quality (voltage and frequency) and reliability. The past studies suggested that the optimal penetration level for wind generation be 26.3% under the present dispatching criteria in Penghu. This study suggests that the criteria of current unit scheduling have to be adjusted by increasing the spinning reserve capacity of the diesel engines without affecting the reliability and power quality of Penghu power system, consequently avoiding the construction of high-cost energy storage systems. The proposed method can determine the number of online diesel units and the needed reserve capacity under different load levels by considering the reliability of power supply, the criteria for the limit of wind power penetration, the distribution in different sites for the wind turbines, and the required spinning reserve to compensate the energy loss when a single diesel unit trips offline or any N-1 accident occurs.
机译:在澎湖地区,其特点令人印象深刻的容量系数高达45%,丰富的风力资源吸引在基于柴油动力系统建立更多的风力发电机组的权力。然而,由于风力涡轮机输出的不稳定性,风力发电系统中的高穿透可相对影响系统的功率质量(电压,频率)和可靠性。过去的研究表明,对于风力发电的最佳普及率是26.3%,在澎湖本调度标准。这项研究表明,当前单元调度的标准必须通过增加柴油机的旋转备用容量,而不影响澎湖电力系统的可靠性和电力质量,因而避免高成本的能量存储系统的结构进行调整。所提出的方法可以通过考虑电源,风力发电渗透,在不同的位点的风力涡轮机的分布的限制条件的可靠性确定在线柴油单元的下不同负载水平的数量和所需的备用容量,和所需旋转备用当单个柴油单元脱机跳机或任何N-1发生事故时,以补偿能量损失。

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