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首页> 外文期刊>Journal of Energy Storage >Modelling and simulation of variable speed pico hydel energy storage system for microgrid applications
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Modelling and simulation of variable speed pico hydel energy storage system for microgrid applications

机译:用于微电网应用的变速微型水轮储能系统的建模与仿真

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The scheduling and dispatch of stochastic renewable energy sources can be difficult in a Microgrid (MG). Renewable energy sources can power the MG reliably if supported by energy storage systems, via hierarchical control of the MG. In this work, a sustainable energy storage system is modelled with the existing resources in an agricultural farm. The resource is a downscaled pumped hydro storage system called Pico Hydel Energy Storage System (PHESS). The PHESS is numerically modelled with the governing equations of various components in the system. The proposed configuration caters for the water demand of crops and the energy storage requirement in a renewable energy powered microgrid. A full scale power converter topology is employed for variable speed operation of the proposed energy storage system. The power absorbed from the microgrid and injected into the microgrid is controlled by adjusting the speed of PHESS. An adaptive perturb and observe algorithm is developed to control the storage system in the generating mode, thus enabling the maximum extraction of power at various discharge rates and hydraulic head. A relationship between the power and speed of the turbine is deduced through regression analysis to control the storage system in pumping mode. The proposed model of PHESS is optimized to accept power commands directly from the MG controller for various levels of controls in the MG thus ensuring plug and play feature. The results obtained from MATLAB/Simulink software justify the effectiveness of the control strategies in both modes of operation.
机译:随机可再生能源的调度和调度在微电网(MG)中可能难以困难。可再生能源可以通过储能系统支持,通过MG的分层控制,可靠地为MG为可靠的。在这项工作中,可持续的能量存储系统与农业农场的现有资源建模。该资源是一个次要泵送的水力储存系统,称为Pico Hydel储能系统(点球菌)。点击花序在数值上用系统中各种组件的控制方程式建模。所提出的配置适用于可再生能源微电网中的作物水需求和能量存储要求。用于所提出的能量存储系统的可变速度操作的全尺度功率转换器拓扑。通过调节点击速度来控制从微电网吸收并注入微电网中的功率。开发了一种自适应扰动和观察算法以控制发电模式中的存储系统,从而使各种放电速率和液压头的最大电力提取。通过回归分析推导出涡轮机的功率和速度之间的关系来控制泵送模式中的存储系统。所提出的PHESS模型被优化以直接从MG控制器接收电源命令,以便MG中的各种级别控制,从而确保即插即用功能。从Matlab / Simulink软件获得的结果证明了在两种操作模式中的控制策略的有效性。

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