利用直流发电机的机械能提高发电楼层的效率

Sagita Rochman, Rasyida Shabihah Zukro Aini, Mussafa Billah
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引用次数: 0

摘要

印度尼西亚人口日益增长的用电量需要可再生能源作为发电供应的替代方案。可再生能源可以通过机械能以最简单的形式形成,即以脚踏板的形式形成。一般来说,利用人类脚步收集能量的地板都是用压电传感器设计的。这个传感器负责把机械能转换成电能。而压电体产生的功率仅为0.041 μW ~ 240.59 μW左右。因此,在本研究中,提出了一种替代设计的脚踏地板,能够使用直流发电机收集电能。所提出的平台包括一个平台设计,利用齿轮齿条上齿轮的平移运动,并由围绕铁板两侧的四个弹簧辅助。除此之外,该平台还有一个电源管理和存储系统。与一般的控制器不同,太阳能充电器控制器用于充电(蓄电池中的电压和电流)和向负载(灯)流动电流。在这个地板测试中使用的对象范围从20-100公斤。与使用压电材料的地板相比,使用直流发电机的地板的功率增加了约0.62%。因此,直流发电机在收集电能方面更有效。
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Increasing the Effectiveness of Electricity-Generating Floors Through the Mechanical Energy of DC Generators
The increasing electricity consumption of the Indonesian population requires renewable energy as an alternative to electricity generation supplies. Renewable energy can be formed through mechanical energy in its simplest form, namely in the form of a footrest. Generally, energy-harvesting floors that utilise human footsteps are designed with piezoelectric sensors. This sensor is responsible for converting mechanical energy into electrical energy. However, the power generated from piezoelectrics is only around 0.041 μW to 240.59 μW. So, in this study, an alternative design for a footstep floor is proposed capable of harvesting electrical energy using a DC generator. The proposed platform consists of a platform design that utilises the translational motion of the gears on the gear rack and is assisted by four springs surrounding the sides of the iron plate. Apart from that, the platform has a power management and storage system. Unlike controllers in general, solar charger controllers are used for charging (voltage and current in the accumulator) and flowing current to the load (lights). The subjects used in this floor test ranged from 20-100 kg. Compared to floors that use piezoelectrics, the results are that floors with DC generators experience an increase in power of around 0.62%. Hence, DC generators are more effective in harvesting electrical energy.
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