开发 1.0 千伏安无燃料发电机

B. Aliemeke, Munirat Abdullawal Momoh, Mercy Onoshioze Asekhome, Christian Azuka Anani, Afoke Chief Vincent
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引用次数: 0

摘要

已开发出 1.0 千伏安无燃料发电机。对可持续能源解决方案的渴望促使人们探索新兴技术,以减少对化石燃料的依赖并降低对环境的影响。其中一项技术就是开发无燃料发电机,利用可再生能源或非常规机制发电。这种发电机制旨在通过创新的设计策略,开发出目标功率为 1KVA 的发电能力。正投影和等距视图的详细图形建模增强了机器部件的稳定性和可靠性。导体材料的精心选择和设计考虑确保了高效的电力传输,最大限度地减少了系统内的损耗。功率因数校正电容器和先进控制算法的集成有助于实现接近统一的功率因数,优化能源利用率。全面的性能测试验证了所开发的发电机在各种负载条件下的功能性和可靠性。无燃料发电机的电池功率为 0.85 千瓦,扭矩为 14.48 牛米,电阻为 48.35 欧姆,电流为 4.55 安培,功率因数为 0.85。性能测试表明,输入响应会带来负载(瓦)的增加。该发电机的成功开发不仅证明了清洁和可持续能源解决方案的可行性,而且还凸显了无燃料发电机技术的进一步发展潜力,使能源前景更加光明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a 1.0 KVA Fuelless Generator
A 1.0 KVA fuelless generator has been developed. The crave for sustainable energy solution has led to the exploration of emerging technologies targeted at reducing reliance on fossil fuels and reducing environmental impact. One such technology is the development of fuelless generators, which harness renewable energy sources or utilize unconventional mechanisms to generate electricity. This power producing mechanism is aimed to develop a targeted 1KVA power capacity through innovative design strategies. Detailed graphical modeling of the orthographic projection and isometric views brought about enhanced machine components development for stability and reliability. Careful selection of conductor materials and design considerations ensured efficient power transmission, minimizing losses within the system. Integration of power factor correction capacitors and advanced control algorithms contributed to achieving a power factor close to unity, optimizing energy utilization. Comprehensive performance testing validated the functionality and reliability of the developed generator under various load conditions. The development of a fuelless generator with a battery power capacity of 0.85 Kw, torque of 14.48 Nm, resistance of 48.35 ohms, current of 4.55 Amperes and a power factor of 0.85 signifies a significant breakthrough in sustainable energy generation. The performance test showed that that an input response brought about an increase in load (W). The success of developing the generator not only demonstrates the feasibility of clean and sustainable energy solutions but also underscores the potential for further advancements in fuelless generator technology towards a more reviving energy prospect.
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