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A preliminary dynamic behaviors analysis of a hybrid energy storage system based on adiabatic compressed air energy storage and flywheel energy storage system for wind power application

机译:基于绝热压缩空气储能和飞轮储能系统的风能混合动力储能系统的初步动力学行为分析

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Integrating energy storage system into wind system can mitigate the negative effects caused by the intermittent wind. In addition, the spectrum analysis of wind power implies that the hybrid energy storage system may have better performance on smoothing out the wind power fluctuations than the independent energy storage system. The main advantage of the hybrid energy storage system is the multi-response speeds. Also, the hybrid energy storage system often operates in the modes switch, partial load and frequent start/stop conditions. Thus, the dynamic behaviors of each devices and the assembly of hybrid energy storage system are important for the system operation and control system design. The design, off-design analysis and parametric analysis of a wind-hybrid energy storage system consisting an A-CAES (adiabatic compressed air energy storage) system and a FESS (flywheel energy storage system) based on spectrum analysis method are carried out in the previous paper (P Zhao et al., 2014). This paper will conduct a preliminary dynamic behaviors analysis of the proposed wind-hybrid energy storage system based on the dynamic models. The simulation results indicate that the total power of wind-hybrid energy storage system can fit the load requirement well, providing an efficient power management for wind power penetration. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将储能系统整合到风力系统中可以减轻间歇性风力带来的负面影响。此外,风能频谱分析表明,与独立式储能系统相比,混合式储能系统在消除风能波动方面可能具有更好的性能。混合储能系统的主要优势是多响应速度。而且,混合式储能系统通常在模式切换,部分负载和频繁的启动/停止条件下运行。因此,每个设备的动态行为以及混合式储能系统的组装对于系统的运行和控制系统设计都是重要的。在基于频谱分析方法的A-CAES(绝热压缩空气储能)系统和FESS(飞轮储能系统)组成的混合动力储能系统中,进行了设计,设计外分析和参数分析。以前的论文(P Zhao et al。,2014)。本文将基于动态模型对拟议的风电混合储能系统进行初步的动态行为分析。仿真结果表明,风电混合储能系统的总功率可以很好地适应负荷需求,为风电渗透提供了有效的电源管理。 (C)2015 Elsevier Ltd.保留所有权利。

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