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基于A(yíng)rduino單片機的太陽(yáng)能智能充電控制器監測系統設計
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吉林大學(xué),應用技術(shù)學(xué)院

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TN876

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Design of Monitoring System for Solar Energy Intelligent Charging Controller Based on Arduino MCU
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    摘要:

    考慮到充電控制器在實(shí)際應用過(guò)程中未考慮控制器循跡、避障處理,造成連接穩固能力較差、控制通路信號突變較大問(wèn)題,設計一種基于A(yíng)rduino單片機的太陽(yáng)能智能充電控制器檢測系統。在總體硬件結構基礎上,部署Arduino單片機的集成形式,并聯(lián)合可移植的太陽(yáng)能智能監測協(xié)議,對充電控制器的監測節點(diǎn)進(jìn)行傳輸處理,完成監測系統的結構組織搭建。利用太陽(yáng)能控制器的循跡標準,對系統中可能出現的監測問(wèn)題進(jìn)行避障處理,實(shí)現智能充電控制器的監測方案選型。在多個(gè)微系數條件的促進(jìn)下,對系統的參量誤差進(jìn)行精準標定,完成基于A(yíng)rduino單片機的太陽(yáng)能智能充電控制器檢測系統設計。在40S68S37N03充電芯片的支持下,累計監測系統的多次運行調試結果可知,充電頻率處于30Hz-50 Hz之間時(shí),太陽(yáng)能控制器的連接穩固能力提升明顯,通路控制曲線(xiàn)在保持原有變化幅度的基礎上,出現穩定波動(dòng)周期,解決了控制通信號路突變問(wèn)題。

    Abstract:

    Considering that the charging controller does not consider the controller tracking and obstacle avoidance processing in the actual application process, resulting in poor connection stability and large sudden change of the control path signal, design a solar intelligent charging controller detection system based on Arduino single chip microcomputer. On the basis of the overall hardware structure, Arduino microcontroller integrated form is deployed, and combined with portable intelligent solar energy monitoring protocol, the monitoring nodes of charging controller are transmitted and processed, and the structure of monitoring system is completed. Using the tracking standard of solar energy controller, the obstacle avoidance treatment of monitoring problems may occur in the system is carried out, and the monitoring scheme selection of intelligent charging controller is realized. Promoted by several micro-coefficients, the parameter error of the system is calibrated accurately, and the detection system of solar intelligent charging controller based on Arduino MCU is designed. Supported by 40S68S37N03 charging chip, the results of running and debugging of the accumulative monitoring system show that when the charging frequency is between 30Hz and 50Hz, the connection stability of the solar controller is improved obviously. On the basis of maintaining the original variation range, the path control curve has a stable fluctuation period, which solves the problem of the sudden change of the control signal path.

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引用本文

楊立英.基于A(yíng)rduino單片機的太陽(yáng)能智能充電控制器監測系統設計計算機測量與控制[J].,2019,27(8):99-103.

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  • 收稿日期:2019-03-02
  • 最后修改日期:2019-03-15
  • 錄用日期:2019-03-15
  • 在線(xiàn)發(fā)布日期: 2019-08-13
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