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Analysis of a new design of the hybrid energy storage system used in the residential m-CHP systems

机译:住宅m-CHP系统中使用的混合储能系统的新设计分析

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The energy balancing problem is the main challenge for the effective application of micro combined heat and power (m-CHP) in a residential context. Due to its high energy density and relative robustness, the lead-acid battery is widely used for power demand management to compensate the mismatch between the m-CHP electrical output and domestic demand. However, batteries are not suited to respond effectively to high frequency power fluctuations, but when coupled to the m-CHP, they experience frequent short-term charge/discharge cycles and abrupt power changes, which significantly decreases their lifetime. This paper addresses this problem by hybridising the lead-acid battery storage with superconducting magnetic energy storage (SMES) to form a hybrid energy storage system (HESS) that is coordinated by a novel sizing based droop control method. The control method for the first time considers both the capacity sizing of the HESS technologies and the droop control method of the battery and the SMES. A hardware in the loop test circuit is developed coupling with the real time digital simulator (RTDS) to verify the performance of the HESS with the new control algorithm. The experimental results show that control method is able to exploit the different characteristics of the SMES and the battery to meet the mismatch of m-CHP power generation and domestic, demand. In addition, the lifetime analysis is implemented in this paper to quantify the battery lifetime extension in the HESS, which further proves the validity of the proposed control strategy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:能量平衡问题是在住宅环境中有效应用微型热电联产(m-CHP)的主要挑战。铅酸电池由于其高能量密度和相对耐用性而被广泛用于功率需求管理,以补偿m-CHP电输出与国内需求之间的不匹配。然而,电池不适合有效地响应高频功率波动,但是当与m-CHP耦合时,它们会经历频繁的短期充电/放电周期和突然的功率变化,这会大大缩短其使用寿命。本文通过将铅酸电池存储与超导磁储能(SMES)混合以形成混合储能系统(HESS)来解决此问题,该系统通过基于尺寸的新型下垂控制方法进行协调。该控制方法首次考虑了HESS技术的容量大小以及电池和SMES的下垂控制方法。开发了环路测试电路中的硬件,并与实时数字仿真器(RTDS)结合使用新的控制算法来验证HESS的性能。实验结果表明,该控制方法能够利用SMES和电池的不同特性来满足m-CHP发电与国内需求的不匹配。此外,本文通过寿命分析来量化HESS中的电池寿命延长,从而进一步证明了所提出的控制策略的有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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