一种新型硅光电池阵列自动跟踪与最大功率输出装置设计

Ahmed Abdalah yusuf, Lingqin Yi, Xiang Si, Ning Yang
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摘要

近年来,环境问题和能源危机已经成为严重的问题。这使得人们的注意力转向了绿色和可再生的太阳能。为解决传统光伏系统利用率低、自动化程度低、成本高等缺点,提出了一种硅光电池自动跟踪与最大功率输出装置。该系统由太阳能自动跟踪装置、最大功率点跟踪(MPPT)系统(由STM32控制)和基于Zigbee无线的监控系统组成。太阳能自动跟踪装置采用四象限光电检测方式,通过逻辑电路判断实现全方位、高精度双轴自动跟踪,最大限度地利用太阳能。采用四开关Buck-Boost电路作为主电路,实现大范围调节和同步整流控制,并结合软开关技术,大大提高了系统的转换效率。ZigBee网络监控系统以CC2530作为收发器节点。测试结果表明,该太阳能自动跟踪装置能够高精度跟踪太阳轨迹,实现光强利用率最大化。MPPT控制器的跟踪精度达到99%,转换效率也大大提高,达到98%。基于Zigbee无线的监控系统工作稳定。综上所述,该装置有效地提高了太阳能的利用率。结构简单,造价低廉,具有很大的工程实用价值
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A Novel Design of Automatic Tracking and Maximum Power output Device for Silicon Photocell Array
In recent years, environmental concerns and energy crisis have become serious issues. This has shifted much focus towards the solar energy which is green and renewable. In order to solve the shortcomings of low utilization, low automation and high cost of the traditional photovoltaic system, we propose an automatic tracking and maximum power output device for silicon photocell. The system is composed of solar automatic tracking device, maximum power point tracking (MPPT) system (controlled by STM32) and monitoring system based on Zigbee wireless. The solar automatic tracking device adopts four-quadrant photoelectric detection mode, realizes omni-directional and high-precision biaxial automatic tracking through logic circuit judgment, and makes maximum use of solar energy. The four-switch Buck-Boost circuit is used as the main circuit to realize wide range adjustment and synchronous rectifier control, which is combined with soft-switching technology to greatly improve the conversion efficiency of the system. ZigBee network monitoring system takes CC2530 as the node of transceiver. Results of testing showed, that solar automatic tracking device can track the solar trajectory with high precision and realize the maximum utilization rate of light intensity. The tracking accuracy of MPPT controller reached 99%, and the conversion efficiency also improved greatly, up to 98%. The monitoring system based on Zigbee wireless worked stably. In summary, the device effectively improves the utilization rate of solar energy. The simple structure and low cost make it of great practical value in engineering
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