Performance Analysis of Dual Axis Solar Tracker

Sapam Rhison Singh, Piyali Das
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Abstract

Solar energy has emerged as a viable source of electricity due to its environmental friendliness and ability to reduce greenhouse gas emissions throughout the world. Solar energy has the potential to meet the world's energy demands, but our ability to transform it into electrical energy in an efficient and cost-effective manner is the sole constraint. Weather fluctuations and how much radiation falls on the panel or reflector determine how much power is generated from a PV cell. Solar trackers are required to ensure that the PV panel receives the greatest amount of sunlight. This paper looks at the Dual Axis Solar Tracking (DAST) system and a Simulink model is developed with MATLAB software to compare the efficiency of fixed and DAST systems.
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双轴太阳能跟踪器性能分析
太阳能因其环境友好性和减少全球温室气体排放的能力而成为一种可行的电力来源。太阳能有潜力满足世界的能源需求,但我们能否以高效和经济的方式将其转化为电能是唯一的限制。天气波动和落在面板或反射器上的辐射量决定了光伏电池产生的功率。需要太阳能跟踪器来确保光伏板接收到最大数量的阳光。本文以双轴太阳跟踪系统(Dual Axis Solar Tracking, DAST)为研究对象,利用MATLAB软件建立了Simulink模型,对固定系统和DAST系统的效率进行了比较。
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