Improvement of power quality of wind-FC energy power hybrid system connected to network

S. Arezki, M. Boudour
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Abstract

Among distributed generation, wind power generation with a variable speed device based on a doubly-fed induction machine used in generating mode (DFIG) is widely utilized with a hybrid energy technology. The control of blade pitch angle is a necessary part of variable speed wind turbines since by controlling the pitch angle, the aerodynamic power that flows through to the generator can be adjusted using the PI controller. In hybrid systems, fuel cell generator may be used as a source. Fuel cells are very attractive to be used with intermittent sources of energy, because of high efficiency, fast load response, modularity and fuel flexibility. This paper introduces hybrid wind (WG)/Fuel Cell (FC) alternative energy system for sustained power generation. The variable speed operation in such wind turbines is achieved by means of a dc-ac multi-level power converter among the rotor winding through fuel cell generator and the stator is directly connected to the grid while battery can meet the load demand above the maximum power available from the FC system for short durations. The aim of this design is minimization of overall cost of generation scheme. Based on simulation results, Dynamic behavior of voltage, power, torque, etc. has been studied. It has been found that these renewable resources would be a feasible solution for distributed generation of electric power for stand-alone applications at remote locations.
并网风电- fc混合动力系统电能质量的改善
在分布式发电中,基于双馈感应电机发电模式(DFIG)的变速装置风力发电作为一种混合能源技术得到了广泛的应用。叶片俯仰角的控制是变速风力发电机的必要组成部分,因为通过控制俯仰角,可以使用PI控制器来调节流经发电机的空气动力。在混合动力系统中,可以使用燃料电池发电机作为动力源。燃料电池具有效率高、负荷响应快、模块化和燃料灵活等优点,在间歇性能源中应用非常有吸引力。介绍了一种用于可持续发电的混合风能/燃料电池替代能源系统。这种风力机的变速运行是通过燃料电池发电机在转子绕组之间建立直流-交流多级功率变换器实现的,定子直接与电网相连,而电池可以满足FC系统短时间内最大功率以上的负荷需求。本设计的目的是使发电方案的总成本最小化。基于仿真结果,对电压、功率、转矩等的动态特性进行了研究。人们发现,这些可再生资源将成为偏远地区独立应用的分布式发电的可行解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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