期刊文献+

汽车太阳能电池板自动展开与追踪机构 被引量:1

Solar Panels Mechanism of Automatically Folding and Tracking
下载PDF
导出
摘要 为了解决传统的太阳能电池板装置不能折叠以及不能跟随太阳转动的问题,利用SolidWorks设计了太阳能电池板的自动收展和追踪机构,分析了太阳能电池板自动收展和追踪机构的工作原理以及各零部件的驱动关系。该装置以舵机为输出动力,运用单片机控制等技术,实现了在需要太阳能电池板工作的时候,将其展开增大受光面积,提升工作效率,不需要太阳能电池板工作时,将其折叠减小占用面积,便于携带,并且通过舵机的转动,带动太阳能电池板跟随太阳转动,通过单片机来控制太阳能电池板转动的方位和角度,确保对光照的利用率达到最大化。该装置具有动作迅速,结构紧凑,携带方便,自动化程度高等特点,可广泛应用于生产生活中。 In order to solve the problem that the traditional solar panel device can't fold and can't follow the sun's rotation,the automatic retraction and tracking mechanism of solar panel is designed by using SolidWorks.The working principle of the automatic retraction and tracking mechanism of solar panel and the driving relationship of each component are analyzed.The device takes the steering gear as the output power,uses the technology of single chip microcomputer control and so on.When the solar panel is needed to work,it can expand the light receiving area and improve the working efficiency.When the solar panel is not needed to work,it can be folded to reduce the occupied area,which is easy to carry.And through the rotation of the steering gear,it can drive the solar panel to follow the sun,and through the single The chip machine controls the rotation direction and angle of the solar panel to ensure the maximum utilization of the light.The device has the characteristics of quick action,compact structure,convenient carrying and high degree of automation.It can be widely used in production and life.
作者 王保军 孟庆园 董炳洁 沙翠萍 高金霞 单俊睿 宋瑞琦 刘硕 姚俊明 张平霞 朱永强 WANG Bao-jun;MENG Qing-yuan;DONG Bing-jie;SHA Cui-ping;GAO Jin-xia;SHAN Jun-rui;SONG Rui-qi;LIU Shuo;YAO Jun-ming;ZHANG Ping-xia;ZHU Yong-qiang(School of Mechanical and Automotive Engineering,Qingdao University of Technology,Qingdao 266520,China)
出处 《内燃机与配件》 2019年第22期218-219,共2页 Internal Combustion Engine & Parts
基金 国家自然科学基金资助项目(51005128) 2018年国家级大学生创新训练项目(201810429060)
关键词 太阳能电池板 自动 展开 追踪 SOLIDWORKS solar panels automatically fold track SolidWorks
  • 相关文献

参考文献3

二级参考文献25

  • 1潘庆和.5TY-10玉米脱粒机的性能测试[J].现代化农业,1994(8):36-37. 被引量:3
  • 2陈小素,吕先金.浅谈基本风压计算[J].浙江气象,2005,26(4):26-29. 被引量:7
  • 3孙凯,戈新生.航天器太阳帆板伸展过程最优控制的粒子群优化算法[J].工程力学,2007,24(9):188-192. 被引量:8
  • 4DUBOWSKY S, VAFA Z. On the dynamics of space manipulator using the virtual manipulator, with applica- tions to path planning[ J]. The Journal of the Astronau- tical Sciences, 1990, 38(4) :441-472.
  • 5YOSHIDA K, YOJI U. Control of space manipulators with generalized jacobian matrix [ J 1 ~ Space Robotics: Dynamics and Control, The Kluwer International Series in Engineering and Computer Science, 1993, 188:165-204.
  • 6PAPADOPOULOS V, OANNIS T, KOSTAS N. Smooth planning for free-floating space robots using polynomials [ C ]//Proceedings of the IEEE International Conference on Robotics and Automation Barcelona. New York: IEEE, 2005.
  • 7IOANNIS T, EVANGELOS P. On point-to-point motion planning for underactuated space manipulator systems [ J ]. Robotics and Autonomous Systems, 2007,55 (2) : 122-131.
  • 8ZHANG J J, YAO S D, PENG B, et al. Path optimiza- tion of free-flying space robot based on adaptive genetic algorithm [ C ]//The 4~h International Conference on Measurement. Shenzhen: Instrumentation and Automa- tion, 2015.
  • 9戈新生,刘延柱.航天器太阳帆板展开过程的最优控制[J].空间科学学报,1997,17(4):360-366. 被引量:16
  • 10李心平,高连兴.差速式玉米种子脱粒机的性能试验[J].农业工程学报,2009,25(12):102-106. 被引量:27

共引文献3

同被引文献6

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部