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首页> 外文期刊>Indian Journal of Science and Technology >Performance Analysis, Modeling and Control of Multi-Port DC-DC Boost Converter for an Integrated Power Generation System.
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Performance Analysis, Modeling and Control of Multi-Port DC-DC Boost Converter for an Integrated Power Generation System.

机译:集成发电系统的多端口DC-DC Boost转换器的性能分析,建模和控制。

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Objective: This paper presents a new DC-DC boost converter for renewable hybrid power generation scheme is designed using five controllable switches in its unified structure. Methods/ Statistical Analysis: In this research work, converter operation is discussed with four different operating modes based on the renewable resources availability. To rectify the difficulties associated with controller design of this converter, multi input - multi output controller design is obtained by deducing the small signal equations and state space modeling for all the operating modes. In this study, MATLAB/Simulink is used to design the model for DC-DC boost converter. A strategy to manage the power flow between the different energy sources is presented. Findings: Uncomplicated structure, centralized control, transformer-less operation, less weight, highly stable and increased output voltage is the best qualities of the designed converter. This study demonstrates that the overall power management is efficient and demand is balanced successfully. Applications/Improvement: This research helps to find the best power electronic converter structure for renewable based hybrid power generation system.
机译:目的:本文提出了一种新的DC-DC升压型转换器,用于可再生混合动力发电方案,该方案采用五个可控开关在其统一结构中进行设计。方法/统计分析:在这项研究工作中,基于可再生资源的可用性,讨论了四种不同运行模式下的变流器运行。为了纠正与该转换器的控制器设计相关的困难,通过推导所有操作模式的小信号方程式和状态空间建模,可以得到多输入-多输出控制器设计。在这项研究中,使用MATLAB / Simulink设计DC-DC升压转换器的模型。提出了一种管理不同能源之间的功率流的策略。结果:结构简单,集中控制,无变压器运行,重量轻,高度稳定和输出电压升高是设计转换器的最佳品质。这项研究表明,总体电源管理是有效的,并且可以成功平衡需求。应用/改进:该研究有助于为基于可再生能源的混合发电系统找到最佳的电力电子转换器结构。

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