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首页> 外文期刊>Indian Journal of Science and Technology >Analysis of Non-Isolated Bidirectional Active Clamped DC-DC Converter for PV and Battery Integrated Systems
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Analysis of Non-Isolated Bidirectional Active Clamped DC-DC Converter for PV and Battery Integrated Systems

机译:用于光伏和电池集成系统的非隔离双向有源钳位DC-DC转换器的分析

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Background/Objective: A novel soft switching technique is implemented in a Bidirectional DC-DC converter by using an Active clamped Auxiliary switch and in turn it achieves continuous current of inductor and operates at constant frequency is used to turn ON and turn OFF the switches. Methods/Statistical Analysis: The Power electronics converter systems have DC bus voltages they are connected to batteries or supercapacitors. Bidirectional converters which are connected to battery, supercapacitor allows them to charge or discharge. A new soft switching Bi-directional direct current to direct current converter is presented in this paper. This converter is operated in zero voltage and zero current switching, continuous inductor current and constant frequency that frequency is used to turn ON and turn OFF the switches. The switching stresses are reduced in this proposed method by auxiliary switches compared to traditional methods. The simulation results are obtained by using MATLAB software in this paper. Findings: The proposed converter is implemented by using an Auxiliary switch with soft switching technique. The output is ripple free DC voltage of 63.5V. Improvements: The Bidirectional Converter will operate at continuous inductor current also with less ripples in output voltage.
机译:背景技术/目的:一种新颖的软开关技术是通过使用有源钳位辅助开关在双向DC-DC转换器中实现的,进而实现电感器的连续电流,并以恒定频率工作以接通和断开开关。方法/统计分析:电力电子转换器系统具有直流总线电压,它们已连接至电池或超级电容器。连接到电池,超级电容器的双向转换器允许它们充电或放电。本文提出了一种新型的软开关双向直流到直流转换器。该转换器在零电压和零电流开关,连续电感器电流和恒定频率下工作,该频率用于接通和断开开关。与传统方法相比,该方法通过辅助开关可降低开关应力。本文利用MATLAB软件获得了仿真结果。发现:建议的转换器是通过使用具有软开关技术的辅助开关来实现的。输出为63.5V的无纹波直流电压。改进:双向转换器将在连续的电感器电流下工作,同时输出电压的纹波也更少。

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