光电技术应用
光電技術應用
광전기술응용
ELECTRO-OPTIC WARFARE & RADAR PASSIVE COUNTERMEASURES
2015年
3期
54-57,78
,共5页
充电控制器%单片机%蓄电池%PWM
充電控製器%單片機%蓄電池%PWM
충전공제기%단편궤%축전지%PWM
charging controller%single chip microcomputer%battery%pulse width modulation (PWM)
针对目前太阳能充电控制器对蓄电池的保护不够充分,蓄电池的寿命缩短这种情况,研究确定了一种基于单片机Atmega16的太阳能充电控制器的方案。本设计使用低功耗、高性能的Atmega16单片机作为核心器件对整个电路进行控制。系统硬件电路由太阳能电池充电电路、电压采集和显示电路、单片机控制电路和RS-485串口通信电路组成,主要实现对蓄电池电压的采集和显示。软件部分依据PWM(pulse width modulation)脉宽调制控制策略,编制程序使单片机输出PWM控制信号,控制信号将实现对功率开关器件MOS管开通与关断的控制,从而实现太阳能极板对蓄电池的充电控制[1]。根据控制器的要求,编制软件程序,软件实现蓄电池高效率充电,使蓄电池不过充、过放,保护蓄电池,延长蓄电池使用寿命。
針對目前太暘能充電控製器對蓄電池的保護不夠充分,蓄電池的壽命縮短這種情況,研究確定瞭一種基于單片機Atmega16的太暘能充電控製器的方案。本設計使用低功耗、高性能的Atmega16單片機作為覈心器件對整箇電路進行控製。繫統硬件電路由太暘能電池充電電路、電壓採集和顯示電路、單片機控製電路和RS-485串口通信電路組成,主要實現對蓄電池電壓的採集和顯示。軟件部分依據PWM(pulse width modulation)脈寬調製控製策略,編製程序使單片機輸齣PWM控製信號,控製信號將實現對功率開關器件MOS管開通與關斷的控製,從而實現太暘能極闆對蓄電池的充電控製[1]。根據控製器的要求,編製軟件程序,軟件實現蓄電池高效率充電,使蓄電池不過充、過放,保護蓄電池,延長蓄電池使用壽命。
침대목전태양능충전공제기대축전지적보호불구충분,축전지적수명축단저충정황,연구학정료일충기우단편궤Atmega16적태양능충전공제기적방안。본설계사용저공모、고성능적Atmega16단편궤작위핵심기건대정개전로진행공제。계통경건전로유태양능전지충전전로、전압채집화현시전로、단편궤공제전로화RS-485천구통신전로조성,주요실현대축전지전압적채집화현시。연건부분의거PWM(pulse width modulation)맥관조제공제책략,편제정서사단편궤수출PWM공제신호,공제신호장실현대공솔개관기건MOS관개통여관단적공제,종이실현태양능겁판대축전지적충전공제[1]。근거공제기적요구,편제연건정서,연건실현축전지고효솔충전,사축전지불과충、과방,보호축전지,연장축전지사용수명。
For the current solar charging controller’s insufficient protection to the battery, the battery’s life span is shortened, a kind of solar charging controller program based on Atmega16 is researched. Atmega16 with low-power and high performance is used as the core device to control the entire circuit. System hardware circuit consists of solar battery charging circuits, voltage acquisition and display circuits, single-chip microcomputer control and RS-485 serial communication circuits, which mainly realize the acquisition and display of battery voltage. Software is based on pulse width modulation (PWM) strategy, PWM control signal is outputted from single-chip microcomput?er through programming. The control of turning on and off for power switching device metal oxide semiconductor (MOS) tube is realized by the control signal so as to control charging battery through solar plate. According to the re?quirements of the controller, software program is programmed and battery charging efficiency is realized by the soft?ware, which makes the battery no in overcharge and over discharge state. So the battery is protected and the service life of the battery is prolonged.