电工技术学报  2020, Vol. 35 Issue (2): 318-329    DOI: 10.19595/j.cnki.1000-6753.tces.181595
电力电子 |
基于短路电流法的温差发电最大功率点跟踪控制
王军1, 阎铁生1, 陈亮1, 黄涛1,2, 呼爱国3
1. 西华大学流体及动力机械教育部重点实验室 成都 610039;
2. 都灵理工大学能源系 都灵 10129;
3. 奥克兰大学电气工程系 奥克兰 1142
Maximum Power Point Tracking Scheme for Thermoelectric Generators Based on Short-Circuit Current Method
Wang Jun1, Yan Tiesheng1, Chen Liang1, Huang Tao1,2, Aiguo Patrick Hu3
1. Key Laboratory of Fluid and Power Machinery Ministry of Education Xihua University Chengdu 610039 China;
2. Department of Energy Politecnico di Torino Torino 10129 Italy;
3. Department of Electrical & Computer Engineering University of Auckland Auckland 1142 New Zealand
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摘要 温差发电器(TEG)是一种将热能直接转化为电能的新能源发电装置,使用变换器实现对其输出的最大功率点跟踪(MPPT)极为重要。针对温差发电器件存在内阻随外部温度变化、最大功率点随外部温度变化的问题,该文提出一种新的温差发电短路电流最大功率点跟踪控制算法。首先采用微控制器采集变换器电感电流,通过深入分析TEG与Boost变换器等效模型,推导出根据电感电流瞬时值及其斜率估算温差片短路电流的方法,使用PI控制器将电感电流有效值控制在短路电流的一半,从而实现最大功率点跟踪。与传统算法不同,此方法仅需采集电感电流值,无振荡、无静差,对变换器正常工作无影响。最后通过仿真和实验进行验证,结果表明,所提出的短路电流最大功率点跟踪方法能够有效地跟踪全局最大功率点,仅需要一组电流传感器,工作过程不影响主电路正常工作,既减少了成本,又提高了可靠性。
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王军
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关键词 温差发电器升压变换器最大功率点跟踪电感电流短路电流    
Abstract:Thermoelectric Generator (TEG), as a new energy generator, can convert heat into electricity energy directly, and maximum power point tracking (MPPT) plays a crucial role in this energy harvesting and conversion process. However, the internal resistance of TEG and maximum power point change with the external temperature. Therefore, a new short-circuit current MPPT algorithm for TEG is proposed in this paper. By analyzing the equivalent model of TEG and Boost converter, the proposed method can estimate the short-circuit current of TEG by using the instantaneous inductor current and its slope. Then the MPPT is achieved by a PI controller to regulate the root-mean-square value of the inductor current at half of the short-circuit current of TEG. Different from the traditional algorithms, the proposed method realizes MPPT without steady-state errors and oscillations, and has no negative effect on the normal operation of the converter. Finally, the simulation and experimental results show that the proposed method can effectively track the global maximum power point with only one current sensor, and the tracking process does not affect the normal operation of the main circuit, which reduces the cost and improves reliability.
Key wordsThermoelectric generator    Boost converter    maximum power point tracking    inductor current    short-circuit current   
收稿日期: 2018-09-28      出版日期: 2020-01-17
PACS: TM464  
基金资助:四川省科技计划(2019YFH0167)和成都市科技局国际合作项目(2016-GH02-00111-HZ)资助
通讯作者: 阎铁生 男,1981年生,博士,副研究员,研究方向为新能源变换技术、电力电子节能技术等。E-mail: tieshengyan@163.com   
作者简介: 王 军 女,1966年生,博士,教授,研究方向为新能源变换技术、电力电子节能技术、膜计算及其在电气工程领域应用、新型交流电机控制技术及其在电动汽车中应用、智能控制与自动测试技术等。E-mail: wj.xhu@foxmail.com
引用本文:   
王军, 阎铁生, 陈亮, 黄涛, 呼爱国. 基于短路电流法的温差发电最大功率点跟踪控制[J]. 电工技术学报, 2020, 35(2): 318-329. Wang Jun, Yan Tiesheng, Chen Liang, Huang Tao, Aiguo Patrick Hu. Maximum Power Point Tracking Scheme for Thermoelectric Generators Based on Short-Circuit Current Method. Transactions of China Electrotechnical Society, 2020, 35(2): 318-329.
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