Implementation of Voltage Stabilizers on Solar Cell System Using Buck-Boost Converter

A. Nugraha, I. Achmad
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Abstract

Electricity is one of the basic needs of modern human life and is already so integrated into everyday life. This is understandable given the coal's ample resources. Another factor that influences the growth of coal use is that coal plants are designed asa basic burden because the price of coal is relatively cheaper. However, coal's existence as fuel for power plants is on the decline and is not renewables. One of the applications of renewable energy potential is solar power generation technology. On this system using solar panels using 30 wp power. Solar dependence on the environment affects the change in output values in hybrid plant systems, resulting in easy damage to both domestic and industrial appliances or in battery storage systems, so a mechanism is needed to stabilize the output voltage supplied to the battery or load. So, out of this renewable energy potential, it creates innovation Implementation of Voltage Stabilizers on Solar Cell System Using Buck-Boost Converter. Aided by current and voltage sensors controlled by arduino uno so that they can insulate input and output from buck-boost converter. Results from the testing of this device indicate that the buck-boost converter is able to stabilize output output from solar panels with a 14.4 volt set of points. The average efficiency obtained at buck-converter converter testing at buck mode is 85.4 %. On boost mode is 80%. On buck-boost mode is 79.2%.
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利用升压-降压变换器实现太阳能电池系统稳压器
电是现代人类生活的基本需求之一,已经融入日常生活。考虑到煤炭资源丰富,这是可以理解的。影响煤炭使用量增长的另一个因素是,燃煤电厂被设计为基本负担,因为煤炭的价格相对便宜。然而,煤炭作为发电厂燃料的存在正在下降,并且不是可再生能源。可再生能源潜力的应用之一是太阳能发电技术。在这个系统上使用太阳能电池板使用30wp功率。太阳能对环境的依赖性会影响混合电厂系统输出值的变化,导致家用和工业电器或电池存储系统容易损坏,因此需要一种稳定提供给电池或负载的输出电压的机制。因此,基于这种可再生能源的潜力,它创造了利用Buck-Boost变换器在太阳能电池系统上实现稳压器的创新。借助arduino uno控制的电流和电压传感器,使输入和输出与降压转换器隔离。该装置的测试结果表明,降压-升压转换器能够稳定太阳能电池板的输出输出,电压为14.4伏。降压变换器在降压模式下的平均效率为85.4%。升压模式为80%。在buck-boost模式下为79.2%。
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