An Improved DC-DC Boost Converter for Energy Harvesting

Florence Chiao Mei Choong, Yin May Yeo
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Abstract

A novel dual-input DC-DC boost converter that can perform the integration of harvested energy from solar and vibrational input energy sources is proposed. Firstly, the background of a hybrid energy system that relates to multi-input DC-DC converters is discussed, and the limitations of the current designs of power converter ICs are highlighted. A detailed design analysis of the proposed converter was done to justify its performance. A current and voltage stress analysis has been performed to ensure suitable switching devices are selected for the converter. Two different power control strategies are proposed for the DIDCB converter to manage output voltage during source and load-side disturbances. Performance analysis of the circuit is carried out using MATLAB Simulink software. Different duty ratios for power switches in the converter were tested to determine the maximum boost ratio and the highest efficiency that can be achieved by the converter. To demonstrate the feasibility of the proposed converter, the performance of the converter is compared with existing converter topologies. The proposed converter achieved a high efficiency of 99.4%, had less fluctuation in the output voltage, and had reduced overshoot. In addition, the proposed converter demonstrated a simpler configuration and required fewer component counts, which helped reduce the cost and size of the system.
一种用于能量收集的改进DC-DC升压变换器
提出了一种新型的双输入DC-DC升压变换器,可以实现太阳能和振动输入能量的集成。首先,讨论了涉及多输入DC-DC转换器的混合能源系统的背景,并强调了当前功率转换器ic设计的局限性。对所提出的变换器进行了详细的设计分析,以证明其性能。进行了电流和电压应力分析,以确保为变换器选择合适的开关器件。提出了两种不同的功率控制策略用于DIDCB变换器在源侧和负载侧干扰时的输出电压管理。利用MATLAB Simulink软件对电路进行了性能分析。测试了变换器中功率开关的不同占空比,以确定变换器可以实现的最大升压比和最高效率。为了证明所提出的转换器的可行性,将转换器的性能与现有转换器拓扑进行了比较。该变换器效率高达99.4%,输出电压波动小,超调量小。此外,所提出的转换器具有更简单的配置和更少的组件数量,这有助于降低系统的成本和尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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