交直流同步输出混合型升压变换器的分析与控制

Akshay Laxman Pujari, D. More
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摘要

本文研究了在不超过一个转换级的情况下,从直流电源同时提供三相交流输出和升压直流输出的变换器结构。这个电路被称为$\mathbf{3}-\phi$ HBC ($\mathbf{3}-\phi$混合升压转换器),是由传统的dc-dc转换器在升压模式下工作,其中三相桥电路代替控制开关。HBC显示出内在的穿透防护能力。该变换器具有较好的多输出能力和真实性,适合于同时存在交直流负载的系统,如光伏充电站、住宅和工业应用等。在HBC的情况下,可以实现三相交流输出和升压直流输出的独立调节。为了实现直流输出和交流输出的调节,简要地给出了适当的PWM控制方案。为了验证变换器的运行,在电阻负载和电感负载下进行了仿真,并对其稳态性能进行了分析。
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Analysis and Control of Hybrid Boost Converter with Simultaneous AC and DC Outputs
In this paper, a converter architecture which will provide a three-phase ac output and a boosted dc output simultaneously from a dc source in not more than one conversion stage is studied. This circuit known as $\mathbf{3}-\phi$ HBC ($\mathbf{3}-\phi$ hybrid boost converter), is obtained from the traditional dc-dc converter operating in boost mode, where a three phase bridge circuit takes place of control switch. HBC shows immanent shoot-through protection proficiency. Such converter with better multi-output competency and authenticity is befitting the systems with both ac & dc loads in simultaneous mode e.g. PV charging stations, residential and industrial applications, etc. Independent regulation of Both the three-phase ac output and step-up dc output is attainable in case of HBC. For our intent to regulate dc as well as ac output, appropriate PWM control scheme is given in brief. To validate the converter operation, simulation results are demonstrated with resistive and inductive loads and the steady state performance analysis is done.
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