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Robust hydro-thermal power system controller considering energy capacitor system and wind power source

机译:考虑能量电容器系统和风能的鲁棒水火电系统控制器

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This paper presents the method to design the robust controller for the hydro thermal system considering interconnection of two areas. The feasibility of using the automatic generation control with energy capacitor system is implemented to both areas. Wind turbines are considered to be one of the most used alternative sources of energy to solve global warming worldwide. The output of wind turbines depends on the weather condition which causes large fluctuation in the power output when WTs connect to the system. So, the system should be capable of handling uncertainties caused by the wind turbines and load variations. H_∞ loop-shaping method is designed as the proposed controller which is used to regulate and improve system stability in the hydro thermal power system. Results demonstrate that the hydro thermal system with ECS-based H_∞-controller gives higher system stability and more robustness than the hydro thermal system with ECS-based PID controller.
机译:本文提出了一种考虑两个区域互连的水力热力系统鲁棒控制器的设计方法。在两个区域都实现了使用带有能量电容器系统的自动发电控制的可行性。风力涡轮机被认为是解决全球变暖问题最常用的替代能源之一。风力涡轮机的输出取决于天气状况,当WT连接到系统时,天气状况会导致功率输出出现较大波动。因此,该系统应能够处理由风力涡轮机和负载变化引起的不确定性。设计了H_∞环路整形方法作为控制器,用于调节和提高水火电系统的系统稳定性。结果表明,与基于ECS的PID控制器的水力热力系统相比,基于ECS的H_∞控制器的水力热力系统具有更高的系统稳定性和鲁棒性。

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