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A novel controller of a battery-supercapacitor hybrid energy storage system for domestic applications

机译:家用电池-超级电容器混合储能系统的新型控制器

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Electrical energy storage is an attractive technology for complementing domestic scale Combined Heat and Power (CHP) because when CHP is dispatched to meet the heating load, the storage can reconcile any mismatch between the electrical load and CHP generation. Hybridization of electrical storage technologies reduces the compromise between power and energy density and extends storage system lifetime but necessitates a more complex control scheme. This paper proposes a novel control scheme for a domestic battery-supercapacitor hybrid energy storage system (HESS) for use with micro-combined heat and power (micro-CHP) generation. The proposed HESS controller utilizes the low frequency component of the supercapacitor voltage to generate the battery reference current, which not only allocates low frequency power to the battery but also simultaneously maintain the battery current and the supercapacitor voltage within their predefined limits. The negative effects of the 100 Hz ripple component in the super capacitor current, such as overheating and increased converter losses have been hitherto neglected in the literature and are addressed here for the first time by adding a 100 Hz band-stop filter in the super capacitor controller. Simulink simulations and signal hardware-in-the-loop (SHIL) real-time simulations have been conducted to demonstrate the effective operation of the HESS. (C) 2017 Elsevier B.V. All rights reserved.
机译:电能存储是一种对国内规模的热电联产(CHP)进行补充的有吸引力的技术,因为当调度CHP以满足供热负荷时,该存储可以调和电气负荷与CHP发电之间的任何不匹配。蓄电技术​​的混合减少了功率和能量密度之间的折衷,并延长了存储系统的寿命,但需要更复杂的控制方案。本文提出了一种与微热电联产(micro-CHP)一起使用的家用电池-超级电容器混合储能系统(HESS)的新型控制方案。提出的HESS控制器利用超级电容器电压的低频分量来产生电池参考电流,该参考电流不仅将低频功率分配给电池,而且同时将电池电流和超级电容器电压保持在其预定范围内。迄今为止,超级电容器电流中的100 Hz纹波分量的负面影响(例如过热和转换器损耗增加)在文献中已被忽略,并且在本文中首次通过在超级电容器中添加100 Hz带阻滤波器来解决。控制器。已经进行了Simulink仿真和信号硬件在环(SHIL)实时仿真,以演示HESS的有效运行。 (C)2017 Elsevier B.V.保留所有权利。

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