New Approach on Development a Dual Axis Solar Tracking Prototype

N. Barsoum, Rinoe Nizam, Elvin Gerard
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引用次数: 6

Abstract

To track the sun in two directions that is elevation and azimuth, a dual-axis tracking prototype is developed to capture the maximum sun rays by tracking the movement of the sun in four different directions. One axis is azimuth which allows the solar panel to move left and right. The other axis is elevation and allows the panel to turn up and down. The result of this new development provides the solar panels with extensive freedom of movement. This new approach will make use of the Light Depending Resistor (LDR) which is important to detect the sun light by following the source of the sun light location. AutoCAD software is being used to design the draft in 2-dimension (2D) for the hardware dual axis solar tacker. Sketch Up software is being used to sketch the drawing to be more real in 3-dimension (3D). Proteus software is being used to design the circuit for the Arduino UNO microcontrollers and H-BridgeIC chip. This implemented system can save more energy and probably offers more reduction in cost. The paper discusses the process of hardware development and the control process of tracking the sun, as well as the circuit design.
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双轴太阳跟踪样机研制的新思路
为了在高程和方位角两个方向上跟踪太阳,开发了双轴跟踪样机,通过跟踪太阳在四个不同方向的运动来捕获最大的太阳光线。一个轴是方位角,它允许太阳能电池板左右移动。另一个轴是仰角,允许面板上下转动。这种新发展的结果为太阳能电池板提供了广泛的运动自由。这种新方法将利用光依赖电阻(LDR),这对于通过跟踪太阳光源位置来检测太阳光线非常重要。采用AutoCAD软件对硬件双轴太阳能粘接机进行二维草图设计。Sketch Up软件被用来在三维(3D)中绘制更真实的草图。Proteus软件被用于Arduino UNO微控制器和H-BridgeIC芯片的电路设计。该实现的系统可以节省更多的能源,并可能提供更多的降低成本。本文论述了跟踪太阳的硬件开发过程和控制过程,以及电路设计。
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