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A dual-active-bridge-based high-frequency isolated inverter for interfacing multiple PV modules with distributed MPPT

机译:基于双极桥的高频隔离逆变器,用于接地具有分布式MPPT的多个PV模块

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This paper presents a multiport converter structure, based on a modified low-device-count DC-AC dual-active-bridge (DAB) converter, for interfacing multiple PV modules, while ensuring module-level maximum power point tracking. One of the major advantages of the proposed topology is that unlike conventional cascaded H-bridge solutions, both line-module and intermodule leakage current flows are prevented due to the presence of galvanic isolation between the grid and the modules and lack of direct connection between the modules on the dc side. The topological structure used to interface the different dc inputs is based on intermediate coupling at a common high-frequency ac bus and the use of a shared PWM inverter cell to generate the 50 Hz ac output. This reduces the overall device count as compared to the simple solution of using individual microinverters paralleled on the 50 Hz ac bus. The topology also retains the advantages of its core building block viz. zero-voltage-switching operation of the devices and the possibility of realizing power decoupling using film capacitors. PLECS simulation results on a 800 W peak system and preliminary experimental results are presented to verify operation of the circuit.
机译:本文介绍了一种基于改进的低器件计数DC-AC双主动桥(DAB)转换器的多端口转换器结构,用于接地多个PV模块,同时确保模块级最大功率点跟踪。所提出的拓扑的主要优点之一是,与传统的级联H桥接解决方案不同,由于网格与模块之间的电流隔离存在并且之间的电常用隔离以及缺乏直接连接,因此防止了线模块和细胞间漏电流流动。 DC侧的模块。用于接口不同DC输入的拓扑结构基于共同的高频交流总线和使用共用PWM逆变器单元以产生50Hz AC输出的中间耦合。与使用在50 Hz交流总线上平行的单个微逆变器的简单解决方案相比,这减少了整体设备计数。拓扑还保留了其核心构建块的优势。器件的零电压切换操作以及使用胶片电容实现功率去耦的可能性。 PLECS仿真结果在800 W峰系系统上提出了初步实验结果以验证电路的操作。

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