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Method of estimating the maximum penetration level of wind power using transient frequency deviation index based on COI frequency

机译:基于COI频率的暂态频偏指数估算风电最大穿透水平的方法

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Among the significant renewable resources, wind power has acquired the spotlight, due to the quick development in wind energy conversion technology. However, the penetration level of wind power cannot be increased randomly for maximum power generation primarily because the wind farms cannot always provide a precise amount of power similar to the conventional synchronous generators. Since the frequency is the most affected by the penetration of wind power due to the variable nature and the less inertia of these turbines, it is necessary to estimate the maximum level of wind energy that can maintain a nominal frequency and does not affect the frequency stability of the power system. In this paper, new procedures to determine the maximum wind penetration level using transient frequency deviation index (TFDI) and based on the center of inertia frequency are presented. The results of procedures are established through the dynamic simulation of WSCC 9-bus test system. By using this method, the critical wind level can be assessed while the system preserves acceptable operation frequency.
机译:在重要的可再生资源中,由于风能转换技术的飞速发展,风能已成为人们关注的焦点。但是,风力发电的渗透水平不能随机增加以实现最大发电量,这主要是因为风电场无法始终提供类似于常规同步发电机的精确功率。由于这些涡轮机的可变性和较小的惯性,由于频率受风能渗透的影响最大,因此有必要估算可维持标称频率且不影响频率稳定性的最大风能水平电力系统。在本文中,提出了使用瞬时频率偏差指数(TFDI)并基于惯性中心频率确定最大风速的新方法。通过WSCC 9总线测试系统的动态仿真,确定了程序的结果。通过使用这种方法,可以在系统保持可接受的运行频率的同时评估临界风水平。

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