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高精度太阳能自动跟踪装置的研制 被引量:8

Development of automatic tracking device of high precision solar energy
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摘要 太阳能自动跟踪技术的发展对有效提高太阳能利用率具有重要的现实意义,本文介绍了太阳能自动跟踪的原理与种类,则重点介绍了高精度双轴跟踪混合控制的自动跟踪方式、控制电路、检测电路与双轴机械机构的构成,实践证明该装置自动跟踪误差低、性能稳定,提高了光伏电池效率,该装置机构简便、成本低具有重要的实用推广意义。
作者 张磊 郑喜贵
机构地区 郑州科技学院
出处 《制造业自动化》 北大核心 2014年第5期129-132,共4页 Manufacturing Automation
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  • 1王淼,王保利,焦翠坪,景崇友.太阳能跟踪系统设计[J].电气技术,2009,10(8):100-103. 被引量:32
  • 2孙茵茵,鲍剑斌,王凡.太阳自动跟踪器的研究[J].机械设计与制造,2005(7):157-159. 被引量:43
  • 3张利明,杜春旭,吴玉庭,马重芳.基于8051单片机的碟式太阳能跟踪控制系统[J].太阳能,2007(6):19-21. 被引量:13
  • 4James A.Tompkins John A.White Yavuz A.Bozer J.M.A. Tanchoco.《Facilities Planning》.机械工业出版社,2008.
  • 5西门子有限公司.深入浅出西门子S7—200PLC.北京航空航天大学出版社,2007.
  • 6ABDALLAH S, NIJMEH S. Two axes sun tracking system with PLC control [J]. Energy Conversion & Management, 2004,45 (11) 1931-1939.
  • 7JEFFREY S G. Apphcation of the compatibility factor to the design of segmented and cascaded thermoelectric generators[J]. Appl.Phys.Lett,2004,84(13):2436-2438.
  • 8HELWA N H, BANGAT A B G, ELSHENAWY E T. Maximum Collectable Solar Eeergy by Different Solar Tracking systems[J]. Solar Energy, 1991,46(4) :211-217.
  • 9KHAN M T A, TANZIL S M S, RAHMAN R, et al. Design and Construction of an Automatic Solar Tracking System [ J ]//6th International Conference on Electrical and Computer Engineering,2010:326 - 329.
  • 10ARGESEANU Alin, RITCHIE Ewen, LEBAN Krisztina. New Low Cost Structure for Dual Axis Mount Solar Tracking System Using Adaptive Solar Sensor [ J ]//12th International Conference on Optimization of Electrical and Electronic Equipment,2010 : 1109 - 1114.

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  • 1郭玉波,姚郁,遆晓光.一种改进的亚像素算法[J].光电工程,2006,33(10):137-140. 被引量:26
  • 2Cheng Yunlung, Wee Huiping,Chen Pingshun et al. Innovative reservoir sediments reuse and design for sustainability of the hydroelectric power plants[J].Renewable and Sustainable Energy Reviews,2014,36:212-219.
  • 3Yucekaya A.The operational economics of compressed air energy storage systems under uncertainty[J]. Renewable and Sustainable Energy Reviews,2013,22:298-305.
  • 4Kilic M S, Korkut S,Hazer B et aI.Development and operation of gold and cobalt oxide nanoparticles containing polypropylene based enzymatic fuel cell for renewable fuels[J].Biosensors and Bioelectronics,2014,61:500-505.
  • 5Hawthorne K L,Wainright J S, Savinell R F. Maximizing plating density and efficiency for a negative deposition reaction in a flow battery[J].Journal of Power Sources,2014,29:216-224.
  • 6Tang Jiqiang, Fang Jiancheng, Ge S S. Roles of superconducting magnetic bearings and active magnetic bearings in attitude control and energy storage flywheel[J].Physica C,2012,483:178-185.
  • 7Sebastian R, Pena Alzola R. Flywheel energy storage systems:Review and simulation for an isolated wind power system[J]. Renewable and Sustainable Energy Reviews,2012,16:6803-6813.
  • 8Seme S, ~tumberger G. A Novel Prediction Algorithm for Solar Angles Using Solar Radiation and Differential Evolution for Dual-axis Sun Tracking Purposes [ J ]. Solar Energy, 2011, 85 ( 11 ) :2757 - 2770.
  • 9Kelly N A, Gibson T L. Improved Photovoltaic Ener- gy Output for Cloudy Conditions with a Solar Tracking System[J]. Solar Energy, 2009, 83 ( 11 ) : 2092 - 2102.
  • 10曲航,赵军,于晓.抛物槽式太阳能热发电系统的模拟分析(英文)[J].中国电机工程学报,2008,28(11):87-93. 被引量:16

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