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Analysis and Design of Grid-Connected Photovoltaic Systems With Multiple-Integrated Converters and a Pseudo-DC-Link Inverter

机译:具有多集成转换器和伪直流母线逆变器的并网光伏系统的分析和设计

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摘要

An architecture of multiple-integrated converter modules sharing an unfolding full-bridge inverter with a pseudo dc link (MIPs) is proposed for grid-connected photovoltaic systems in this paper. The proposed configuration can improve the power conversion, the control circuit complexity, and the cost competitiveness. The proposed MIP is composed of distributed flyback dc–dc converters (DFCs) and an unfolding full-bridge inverter with an ac filter. The DFCs can eliminate the shading effect by using the individual maximum power point tracking. In conventional flyback-type single-phase utility-interactive inverters, discontinuous conduction mode and boundary conduction mode are popular because of the inherent constant current-source characteristics more desirable for grid connection and of the simple procedures for the controller design. However, the operating mode suffers from a large current stress of the circuit components, which leads to the low power efficiency. To avoid this, the DFCs operate under continuous conduction mode that allows reduced current stresses and increased power efficiency, as well as low material cost. The current control loop of the converters employs primary-side regulation contributing to improvement of dynamics as well as the cost reduction significantly due to the elimination of the high-linearity photocoupler device. Development of a new dc-current loop that maintains the level of dc-current injection into the grid within the levels stipulated by IEEE 1547 will be dealt as well. The performance validation of the proposed design is confirmed by experimental results of a 200-W hardware prototype.
机译:本文提出了一种用于光伏并网发电系统的多集成转换器模块的架构,该模块共享带有伪直流链路(MIP)的展开式全桥逆变器。所提出的配置可以改善功率转换,控制电路复杂度和成本竞争力。提出的MIP由分布式反激式DC-DC转换器(DFC)和带有交流滤波器的展开式全桥逆变器组成。 DFC可以通过使用单独的最大功率点跟踪来消除阴影效应。在常规的反激式单相实用交互式逆变器中,不连续导通模式和边界导通模式很受欢迎,因为其固有的恒定电流源特性对于电网连接更为理想,并且控制器设计简单。然而,操作模式遭受电路组件的大电流应力,这导致低功率效率。为避免这种情况,DFC在连续导通模式下工作,该模式可降低电流应力并提高功率效率,并降低材料成本。转换器的电流控制环路采用初级侧调节,这是由于取消了高线性度光电耦合器器件,从而有助于改善动态性能并显着降低成本。还需要开发一种新的直流电流环路,该环路将直流电流注入电网的水平保持在IEEE 1547规定的水平之内。 200 W硬件原型的实验结果证实了所提出设计的性能验证。

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