期刊文献+

液压系统实现功率匹配节约能源的途径 被引量:3

Methods for Hydraulic Drive System to Achieve Power Match and Energy Conservation
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摘要 液压传动技术已成为工业机械、工程建筑机械及国防尖端产品不可缺少的重要技术。但由于液压传动系统往往既存在压力损失,又存在流量损失,因此功率损失大、效率低,浪费大量能源。基于对液压系统效率和能耗的分析,提出了液压系统实现功率匹配节约能源的几种途径。 Hydraulic drive technique has become an indispensible and significant technique for industrial machinery, engineering & construction machinery, and highly sophisticated products of national defense. However, hydraulic drive system has both pressure loss and flow loss, so it causes large power loss, low efficiency and a great deal of energy waste. Based on the analysis of efficiency and energy consumption of hydraulic drive system, this paper proposes several methods for hydraulic drive system to achieve power match and energy conservation.
作者 赵江平
出处 《液压气动与密封》 2011年第6期65-68,共4页 Hydraulics Pneumatics & Seals
关键词 压力损失 功率匹配 节能 pressure loss power match energy conservation
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参考文献3

  • 1李松晶,阮健,弓永军.先进液压传动技术[M].哈尔滨:哈尔滨工业大学出版社,2008.
  • 2黎启柏.液压元件手册[M].北京:冶金工业出版社,1999..
  • 3姚成玉,赵静一,杨成刚.液压气动系统分析修理[M].北京:化学出版社,2009.

共引文献25

同被引文献27

  • 1Xu Bing Ma Jien Lin Jianjie.COMPUTATIONAL FLOW RATE FEEDBACK AND CONTROL METHOD IN HYDRAULIC ELEVATORS[J].Chinese Journal of Mechanical Engineering,2005,18(4):490-493. 被引量:6
  • 2柳波,鲁湖斌,何清华,陈金涛,雷勇.变量泵功率匹配控制系统的动态仿真研究[J].机械科学与技术,2007,26(1):104-107. 被引量:5
  • 3LIN Tianliang, WANG Qingfeng, HU Baozan, et al. Research on the energy regeneration systems for hybrid hydraulic excavators [J]. Automation in Construction, 2010, 19(18): 1016-1026.
  • 4GUO Xiangen, ZHAO Dingxuan, SHANG Tao, et al. The application of fuzzy control in hydraulic excavator energy-saving control[J]. Journal of Jilin University , 2004, 34(2): 217-221.
  • 5WU Fan, MAO Wenwen, TANG Jin. Based on speed pressure double closed loop control global power matching energy saving system set up [J]. Construction Machinery, 2012(13): 75-80.
  • 6LIU Peng, ZHANG Runli, LIU Xinfu, et al. Hydrostatic transmission engine with variable pump power matching methods[J]. Engineering Machinery Abstract, 2012(3): 43-45.
  • 7HE Qinghua, HAO Peng, CHANG Yihua. Based on the power coordinated control of the hydraulic excavator energy saving system research[J]. Mechanical Science and Technology, 2007, 26(2) : 188-191.
  • 8YOO S, AN S, PARK C, et al. Design and control of hybrid electric power system for a hydraulically actuated excavator[R]. SAE, 2009-01-2927, 2009.
  • 9CHOI J. Tracking control of hydraulic excavator using time varying sliding mode controller with fuzzy system [J]. Advanced Science Letters, 2012, 15(1): 78-82.
  • 10MA Yinhui, DING Jianshe, XU Desong. Based on the Matlab PID parameter self-adjusting fuzzy controller design an application simulation[J]. Power Generation Equipment, 2005(2): 112-113,124.

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