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Fast atom search optimization based MPPT design of centralized thermoelectric generation system under heterogeneous temperature difference

机译:基于快速的Atom搜索优化基于非均相温差在集中热电产生系统的MPPT设计

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This paper designs a novel maximum power point tracking (MPPT) technique for centralized thermoelectric generation (TEG) system under heterogeneous temperature difference (HeTD). Since the HeTD can result in multiple local maximum power points (LMPPs) for centralized TEG system, a fast atom search optimization (FASO) is designed to approximate the global maximum power point (GMPP) from multiple LMPPs. In order to accelerate the convergence for a high quality solution, the Euclidian distance ratio of the original atom search optimization (ASO) is employed to adaptively update according to the dynamic optimization results, as well as for the number of neighbours for each atom. Through case studies such as start-up test, step variation of temperature, stochastic temperature change, and analyse of sensitivity are carried out, in which the practicability and superiority of FASO are compared with that of MPPT method based on a single LMPP and four meta-heuristic algorithms. Simulation results show that the energy output produced by FASO ranges from 101.64% to 451.49% to the alternatives. Finally, through hardware-in-the-loop (HIL) experiment based on a dSpace, the feasibility of the hardware realization is confirmed, in which the difference between simulation results and HIL experiment results is less than 2.3%. (c) 2019 Elsevier Ltd. All rights reserved.
机译:本文设计了一种新的最大功率点跟踪(MPPT)技术,用于在异构温度差(HETD)下的集中热电产生(TEG)系统。由于HETD可以导致集中式TEG系统的多个局部最大功率点(LMPP),因此快速的原子搜索优化(FASO)旨在从多个LMPPS近似全局最大功率点(GMPP)。为了加速高质量解决方案的收敛,原始原子搜索优化(ASO)的欧几里德距离比以根据动态优化结果自适应地更新,以及每个原子的邻居的数量。通过诸如启动试验的案例研究,进行温度,随机温度变化和灵敏度分析的步骤变化,其中FASO的实用性和优越性与基于单个LMPP和四元的MPPT方法进行比较-heuristic算法。仿真结果表明,Faso生产的能量输出从101.64%到451.49%到替代方案。最后,通过基于DSPACE的硬件 - 环路(HIL)实验,确认了硬件实现的可行性,其中模拟结果和HIL实验结果之间的差异小于2.3%。 (c)2019 Elsevier Ltd.保留所有权利。

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