首页> 外文学位 >Photovoltaic Source Simulators for Solar Power Conditioning Systems: Design Optimization, Modeling, and Control.
【24h】

Photovoltaic Source Simulators for Solar Power Conditioning Systems: Design Optimization, Modeling, and Control.

机译:太阳能空调系统的光伏源模拟器:设计优化,建模和控制。

获取原文
获取原文并翻译 | 示例

摘要

This dissertation presents various systematic design techniques for photovoltaic (PV) source simulators to serve as a convenient tool for the dynamic performance evaluation of solar power conditioning systems and their maximum power point tracking algorithms. A well-designed PV source simulator should accurately emulate the static and the dynamic characteristic of actual PV generator. Four major design features should be adopted in any PV source simulator: (i) high power-stage efficiency, (ii) fast transient response-time, (iii) output impedance matching with actual PV generator, and (iv) precise reference generation technique. Throughout this research, two different PV source simulator systems are designed, modeled, and experimentally verified. The design of the first system focuses mainly on creating new reference generation techniques where the PV equivalent circuit is used to precisely generate the current-voltage reference curves. A novel technique is proposed and implemented with analog components to simplify the reference signal generator and to avoid computation time delays in digital controllers. A two-stage LC output filter is implemented with the switching power-stage to push the resonant frequency higher and thus allowing a higher control-loop bandwidth design while keeping the same switching ripple attenuation as in the conventional one-stage LC output filter. With typical control techniques, the output impedance of the proposed simulator did not match the closed-loop output impedance of actual PV generator due to the double resonant peaks of the two-stage LC output filter. Design procedures for both control and power-stage circuits are explained. Experimental results verify the steady-state and transient performance of the proposed PV source simulator at around 2.7 kW output.;The design concept of the first simulator system is enhanced with a new type of PV source simulator that incorporates the advantages of both analog and digital based simulators. This simulator is characterized with high power-stage efficiency and fast transient response-time. The proposed system includes a novel three-phase ac-dc dual boost rectifier cascaded with a three-phase dc-dc interleaved buck converter. The selected power-stage topology is highly reliable and efficient. Moreover, the multi-phase dc-dc converter helps improve system transient response-time though producing low output ripple, which makes it adequate for PV source simulators.;The simulator circuitry emulates precisely the static and the dynamic characteristic of actual PV generator under different environmental conditions including different irradiance and temperature levels. Additionally, the system allows for the creation of the partial shading effect on PV characteristic. This dissertation investigates the dynamic performance of commercial and non-commercial solar power conditioning systems using the proposed simulator in steady-state and transient conditions. Closed-loop output impedance of the proposed simulator is verified at different operating conditions. The impedance profile --magnitude and phase- matches the output impedance of actual PV generator closely. Mathematical modeling and experimental validation of the proposed system is thoroughly presented based on a 2.0 kW hardware prototype. The proposed simulator efficiency including the active-front-end rectifier and the converter stages at the maximum power point is 96.4%.
机译:本文提出了多种光伏系统仿真器的系统设计技术,可以作为太阳能调节系统动态性能评估及其最大功率点跟踪算法的便捷工具。设计良好的光伏源模拟器应准确模拟实际光伏发电机的静态和动态特性。任何光伏源模拟器都应采用四个主要设计特征:(i)高功率级效率;(ii)快速瞬态响应时间;(iii)与实际光伏发电机匹配的输出阻抗;以及(iv)精确的参考生成技术。在整个研究过程中,设计,建模和实验验证了两种不同的PV源模拟器系统。第一个系统的设计主要集中在创建新的参考电压生成技术,其中使用PV等效电路精确生成电流-电压参考曲线。提出了一种新颖的技术,并用模拟组件实现了该技术,以简化参考信号发生器并避免数字控制器中的计算时间延迟。两级LC输出滤波器实现了开关功率级,以将谐振频率推高,从而允许进行更高的控制环路带宽设计,同时保持与传统的单级LC输出滤波器相同的开关纹波衰减。使用典型的控制技术,由于两级LC输出滤波器的双谐振峰,所提出的模拟器的输出阻抗与实际PV发生器的闭环输出阻抗不匹配。解释了控制电路和功率级电路的设计程序。实验结果验证了所提出的PV源模拟器在大约2.7 kW输出功率下的稳态和瞬态性能;;第一个模拟器系统的设计理念通过新型PV模拟器得以增强,该模拟器融合了模拟和数字两种优点基于模拟器。该仿真器具有高功率级效率和快速瞬态响应时间的特点。拟议的系统包括一个新颖的三相AC-DC双升压整流器,它与一个三相DC-DC交错式降压转换器级联。所选的功率级拓扑是高度可靠和高效的。此外,多相DC-DC转换器虽然产生低输出纹波,却有助于改善系统瞬态响应时间,这使其非常适合光伏电源模拟器。;模拟器电路可精确模拟不同条件下实际光伏发电机的静态和动态特性环境条件,包括不同的辐照度和温度水平。另外,该系统允许对PV特性产生部分阴影效果。本文研究了使用该模拟器在稳态和瞬态条件下的商用和非商用太阳能功率调节系统的动态性能。在不同的工作条件下,对所提出的模拟器的闭环输出阻抗进行了验证。阻抗分布图(大小和相位)与实际光伏发电机的输出阻抗非常匹配。基于2.0 kW的硬件原型,对提出的系统进行了数学建模和实验验证。拟议的模拟器效率(包括有源前端整流器和最大功率点处的转换器级)为96.4%。

著录项

  • 作者

    Koran, Ahmed M.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号