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Solar Charge Controller with Maximum Power Point Tracking for Low-Power Solar Applications

机译:具有低功耗太阳能应用的最大功率点跟踪的太阳能电荷控制器

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摘要

Solar Charge Controller (SCC) with Maximum Power Point Tracking (MPPT) is needed to extract maximum energy from photovoltaic. However, a SCC device with MPPT technology feature is expensive on the market due to the requirements for a high-power system. On the other hand, in lower power applications such as IoT sensors, solar street lights, and wireless communication nodes, these types of controllers can be produced at a lower cost. In this study, the design of a low-cost SCC was conducted using the MPPT technology for low-power solar applications. The SCC is designed based on the Arduino microcontroller, which has the role of controlling the circuit and producing PWM signals to regulate the DC-DC converter. Several tests were conducted to validate the efficiency of the MPPT algorithm. The SCC device succeeded in increasing efficiency up to 52% on the low irradiance level.
机译:需要具有最大功率点跟踪(MPPT)的太阳能电荷控制器(SCC)以从光伏中提取最大能量。 然而,由于高功率系统的要求,具有MPPT技术特征的SCC设备在市场上是昂贵的。 另一方面,在诸如IoT传感器,太阳能路灯和无线通信节点的较低功率应用中,这些类型的控制器可以以较低的成本生产。 在这项研究中,使用MPPT技术进行低功耗太阳能应用进行了低成本SCC的设计。 SCC基于Arduino微控制器设计,具有控制电路的作用并产生PWM信号来调节DC-DC转换器。 进行了几种测试以验证MPPT算法的效率。 SCC设备在低辐照度水平上成功升高至52%。

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