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电动汽车驱动 ★ 4.0

用于最大化热电发电器阵列输出功率的优化静态配置及其硬件验证

Optimized static configuration for output power maximization of thermoelectric generator arrays with hardware validation

作者 Dalia Yousri · Hany Essa Zidan Farag · Sukanya V. · Bijukumar B. · Ehab Fahmy El Saadany
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 377 卷
技术分类 电动汽车驱动
相关度评分 ★★★★ 4.0 / 5.0
关键词 A novel optimized static configuration approach is proposed using the Sudoku puzzle (OSC).
语言:

中文摘要

摘要 由于非均匀温度分布(NUTDs)导致模块之间产生功率损耗,热电发电机(TEG)设备作为潜在绿色能源的应用面临重大挑战。为此,文献中已有若干研究提出通过动态重构TEG阵列的方法,以缓解在非均匀温度分布条件下的失配功率损耗。然而,基于动态配置的方法需要安装开关和传感器,这将增加系统的成本与复杂性。为缓解这些问题,本文提出设计并部署一种针对TEG阵列的优化静态配置(OSC),作为一种可替代标准串并联(SP)结构的独特布局。所提出的OSC通过求解数独谜题来确定,旨在维持TEG阵列中并联支路间的温度分布均匀性,从而提升输出功率。所开发的OSC在6×6和9×9两种不同规模的TEG阵列上,在多种非均匀温度分布条件下进行了测试。结果表明,与原始的SP配置相比,TEG阵列的输出功率可提高6.5%以上。此外,还在一个4×4的TEG阵列上进行了实验验证,以确认OSC在实际应用中的可行性。最后,本文从抑制温度分布非均匀性的能力、所需开关数量、系统复杂性和总体成本等因素出发,将OSC方法与近期提出的动态重构方法进行了对比评估。对于一个9×9的TEG阵列,采用OSC方案可节省约1498.5美元用于动态重构所需的开关和传感器的初始成本。

English Abstract

Abstract Employment of the thermoelectric generator (TEG) device as a potential green energy source encounters a major challenge due to the power losses created between its modules because of the non-uniform temperature distributions (NUTDs). For this reason, several previous works in the literature proposed approaches to dynamically reconfigure the TEG arrays to alleviate such mismatched power losses under NUTDs. Yet, dynamic configuration-based approaches require the installation of switches and sensors, which would, in turn, increase the cost and complexity of the system. To alleviate these issues, this paper proposes the design and deployment of an Optimized Static Configuration (OSC) for TEG arrays as a unique layout to replace the standardized series–parallel (SP) one. The proposed OSC is determined via the solution of a Sudoku puzzle that aims to maintain homogeneous temperature distribution across the parallel strings of the TEG array to boost the yielded produced power. The developed OSC is examined with TEG arrays of two different sizes of 6 × 6 and 9 × 9 under various NUTD conditions. The results demonstrate that the TEG array’s power output can be improved by over 6.5 % compared to the original SP configuration. Additionally, experimental validation is carried out in a 4 × 4 TEG array to confirm the feasibility of implementing OSC in practice. Finally, the OSC approach is critically evaluated in comparison to recent dynamic reconfiguration methods, taking into account factors such as the ability to mitigate temperature distribution nonuniformity, the required switches, system complexity, and overall costs. The OSC saves about 1498.5 $ of the initial cost for the switches and sensors needed for the dynamic reconfiguration approaches for a 9 × 9 TEG array.
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SunView 深度解读

该热电发电阵列静态优化配置技术对阳光电源储能系统和电动汽车热管理具有重要借鉴价值。其通过数独算法实现温度均衡分布、提升6.5%功率输出的思路,可应用于ST系列储能PCS的电池热管理优化,降低温差导致的容量损失。相比动态重构方案,静态优化配置无需额外开关和传感器,可节省成本并降低系统复杂度,与阳光电源追求高性价比的产品理念契合。该方法亦可拓展至电动汽车驱动系统的功率器件散热优化,提升SiC/GaN模块在非均匀温度场下的可靠性和效率,为iSolarCloud平台的预测性维护提供温度场建模新思路。