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Interactive smart battery storage for a PV and wind hybrid energy management control based on conservative power theory

机译:基于保守功率理论的用于光伏和风能混合能源管理控制的交互式智能电池存储

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摘要

This paper presents interactive smart battery-based storage (BBS) for wind generator (WG) and photovoltaic (PV) systems. The BBS is composed of an asymmetric cascaded H-bridge multilevel inverter (ACMI) with staircase modulation. The structure is parallel to the WG and PV systems, allowing the ACMI to have a reduction in power losses compared to the usual solution for storage connected at the DC-link of the converter for WG or PV systems. Moreover, the BBS is embedded with a decision algorithm running real-time energy costs, plus a battery state-of-charge manager and power quality capabilities, making the described system in this paper very interactive, smart and multifunctional. The paper describes how BBS interacts with the WG and PV and how its performance is improved. Experimental results are presented showing the efficacy of this BBS for renewable energy applications.
机译:本文介绍了用于风力发电机(WG)和光伏(PV)系统的交互式基于智能电池的存储(BBS)。 BBS由具有阶梯调制的非对称级联H桥多电平逆变器(ACMI)组成。该结构与WG和PV系统平行,与用于WG或PV系统的转换器的直流母线连接的常规存储解决方案相比,ACMI可以降低功率损耗。此外,BBS嵌入了运行实时能源成本的决策算法,以及电池充电状态管理器和电能质量功能,使本文所述的系统具有很高的交互性,智能性和多功能性。本文介绍了BBS如何与WG和PV交互以及如何提高其性能。实验结果表明该BBS在可再生能源应用中的功效。

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