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Topology Synthesis of a Family of Integrated Three-Port Converters for Renewable Energy System Applications

机译:用于可再生能源系统应用的集成三端口转换器系列的拓扑合成

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In the standalone renewable energy system, a multiport converter is more desirable than several single-input converters as it has advantages of a simpler circuit, higher efficiency, and lower cost. This article proposes a novel topology synthesis method to derive integrated three-port converters with low cost and compact structure. With the proposed topology synthesis method, integrated three-port converters can be easily developed from conventional single-input single-output (SISO) converters by replacing a switch and a diode with a basic cell, including bidirectional power flow. Compared with the SISO converter, the derived integrated three-port converters only need to add the extra switch and diode, which makes them have low cost and compact structure. As an example, topology synthesis based on buck, boost, buck-boost, Cuk, SEPIC, and zeta converters is performed in this article. The proposed topology synthesis method can also be extended to deduce a series of n-port converters. In order to achieve a better understanding of the proposed converters, the integrated three-port SEPIC converter is specifically analyzed, including its operation principle, steady-state performance, small-signal modeling, and control system. Finally, experimental verifications have been carried out to illustrate the feasibility and effectiveness of the proposed topology synthesis method.
机译:在独立的可再生能源系统中,多端口转换器比若干单输入转换器更可取,因为它具有更简单的电路,更高效率和更低的成本。本文提出了一种新颖的拓扑综合方法,可以获得具有低成本和紧凑结构的集成三端口转换器。利用所提出的拓扑合成方法,通过用基本单元格式替换开关和二极管,可以通过常规单输入单输出(SISO)转换器容易地开发集成的三端口转换器,包括双向电池,包括双向动力流。与SISO转换器相比,导出的集成三端口转换器只需要添加额外的开关和二极管,这使得它们具有低成本和紧凑的结构。例如,本文在本文中进行了基于降压,升压,降压 - 升压,CUK,SEPIC和Zeta转换器的拓扑合成。也可以扩展所提出的拓扑合成方法以推导出一系列N端口转换器。为了更好地理解所提出的转换器,专门分析了集成的三端口SEPIC转换器,包括其运行原理,稳态性能,小信号建模和控制系统。最后,已经进行了实验验证,以说明所提出的拓扑合成方法的可行性和有效性。

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