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Boost Multi-port Converter with Simultaneous Isolated DC, Non-isolated DC and AC Outputs

机译:通过同时隔离直流,非隔离直流和交流输出提升多端口转换器

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In modern residential applications, the dc based power systems are being increasingly implemented for smart and green energy efficient operation. The power requirement for these residential applications can be fulfilled by small localized generation (i.e., renewable energy), which can serve different variety of consumer loads. Some of the critical loads in these applications may require galvanic isolation from the input source. This paper proposes a boost multi-port converter with simultaneous isolated dc, non-isolated dc and ac outputs. These non-isolated dc, isolated dc, ac loads and dc source are interfaced using a single power converter topology. The salient features of proposed converter include less device count, number of power conversions and the ability to regulate both the outputs independently using decoupled modified sinusoidal pulse width modulation (DMSPWM) technique. The characteristics of the proposed converter with DMSPWM control have been studied in this paper and simulated using a MATLAB/Simulink. The proposed operation has been verified using FPGA controlled laboratory prototype. And also, the proposed topology is compared with conventional topologies in various aspects.
机译:在现代住宅应用中,基于直流的电力系统越来越多地实现了智能和绿色节能操作。这些住宅应用的功率要求可以通过小型局部发电(即可再生能源)来满足,这可以提供不同各种消费负荷。这些应用中的一些临界负载可能需要从输入源的电流隔离。本文提出了一种升压多端口转换器,具有同时隔离的DC,非隔离式直流和AC输出。这些非隔离式DC,隔离的DC,AC负载和DC源使用单功率转换器拓扑接口。所提出的转换器的突出特征包括较少的设备计数,功率转化数量,以及使用去耦修改正弦脉冲宽度调制(DMSPWM)技术独立地调节输出的能力。本文研究了具有DMSPWM控制的所提出的转换器的特性,并使用MATLAB / SIMULINK进行模拟。使用FPGA受控实验室原型验证了所提出的操作。而且,拟议的拓扑在各个方面的传统拓扑比较。

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