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Analysis of frequency sensitive wind plant penetration effect on load frequency control of hybrid power system

机译:频率敏感型风电场穿透对混合动力系统负荷频率控制的影响分析

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摘要

Integration of wind penetration has moved the electricity grid in a transition phase to a new model where wind power plants are expected to participate in all levels of frequency regulation. This paper analyses the load frequency control of hybrid power system consisting of thermal, hydro and gas-based power plants in the presence of non-scheduled wind plants under different operating modes and under different penetration level. A moving average filter and dynamic dead band dependent frequency-active power controller is applied to augment the type-3 wind plant model. Simulation results presented here provides some guidance on the design parameters of frequency regulation scheme in the presence of frequency sensitive wind plant. Simulation results indicate that the penetration level up to 60% of grid code compatible frequency sensitive wind plants participating in the AGC system is a possibility in a strongly interconnected network with low load disturbance. Control area having grid code compatible frequency sensitive wind plant integrated with thermal plant presents better LFC performance than the control area having wind plant combined with gas or hydro power plant The gas-based power plant model dependency upon fuel limitation and maximum-minimum load limitation highly affects the frequency response and makes them suitable as peak load plant only. A detailed representation of temperature control and maximum rate of fuel valve dosing must be included in models to get the proper range of frequency deviations occurring in gas plant based network
机译:风的渗透整合使电网处于过渡阶段,新模式有望使风力发电厂参与所有级别的频率调节。本文分析了在不同运行模式和不同渗透水平下,非计划性风力发电厂存在的火力,水力和天然气基混合动力系统的负载频率控制。应用移动平均滤波器和依赖于动态死区的频率有功功率控制器来增强3型风电厂模型。在存在频率敏感型风电厂的情况下,此处给出的仿真结果为频率调节方案的设计参数提供了一些指导。仿真结果表明,在具有低负载干扰的强互连网络中,参与AGC系统的电网代码兼容频率敏感型风力发电厂的渗透率最高可达60%。具有与热电厂集成的与电网代码兼容的频率敏感型风电厂的控制区比具有与燃气或水力发电站结合的风电厂的控制区具有更好的LFC性能。基于燃气的电厂模型高度依赖于燃料限制和最大最小负荷限制影响频率响应并使它们仅适合于峰值负载设备。模型中必须包括温度控制和最大燃料阀定量给料的详细表示,以获取在基于煤气厂的网络中发生的频率偏差的适当范围

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