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Implementation of FPGA-Based Charge Control for a Self-Sufficient Solar Tracking Power Supply System

机译:自给式太阳能跟踪电源系统基于FPGA的充电控制的实现

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This study used a field-programmable gate array (FPGA) with a Xilinx Spartan-3 FPGA to implement Reflex charge control in a dual-axis solar tracking system with maximum power point tracking (MPPT). The chaos embedded particle swarm optimization method was used to search for the optimum gain constants of the PI controller and the Reflex charging frequency. This scheme not only increases the output power of solar panels but also has a significant effect on switching loss and oscillation of solar charging. The experiment results showed that the proposed method can also significantly improve temperature rise, and that charging efficiency is also better than it is in a traditional charge mode. The results also showed that charging power was enough for solar tracking and the requirements of the charging system. The most significant contribution of this paper is that the scheme can be applied to any active solar tracking and charging system.
机译:这项研究使用了带有Xilinx Spartan-3 FPGA的现场可编程门阵列(FPGA)在具有最大功率点跟踪(MPPT)的双轴太阳能跟踪系统中实现Reflex电荷控制。使用混沌嵌入粒子群优化方法搜索PI控制器的最佳增益常数和Reflex充电频率。该方案不仅增加了太阳能电池板的输出功率,而且对开关损耗和太阳能充电的振荡具有显着影响。实验结果表明,所提出的方法还可以显着改善温升,并且充电效率也优于传统充电模式。结果还表明,充电功率足以满足太阳能跟踪和充电系统的要求。本文最重要的贡献是该方案可应用于任何有源太阳能跟踪和充电系统。

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