708 Energy saving of hydraulic pump by idle reduction method with Accumulator

2008 ◽  
Vol 2008 (0) ◽  
pp. 213-214
Author(s):  
Katsumasa SUZUKI ◽  
Kazutoshi AKIYA ◽  
Yoshitaka SHINMURA ◽  
Michihito SAITO
2011 ◽  
Vol 148-149 ◽  
pp. 942-946 ◽  
Author(s):  
Jin Сhun Song ◽  
Guan Gan Ren ◽  
Yu Jie Ren ◽  
Bai Sen Zhang

The worst problem we are facing in the hydraulic system is the serious loss of energy, due to bad matching between the power components and the actuators and the large pressure loss when oil flowing though the various hydraulic elements, especially in speed governing system. However, Servo pump which is introduced in this paper can cover the problems mentioned above finely. The most difficult thing is its mathematical modeling, in the paper, it is established according to the actual situation. Here, the modeling between servo valve and cylinder, between cylinder and pump are established respectively, then these are connected by geometry relationship, finally ,the whole modeling is completed.


2010 ◽  
Vol 44-47 ◽  
pp. 3795-3799
Author(s):  
Jin Ying Li ◽  
Ya Jun Wei ◽  
Jin Chao Li ◽  
Yu Zhi Zhao

Power industry is the key field of implementing energy saving and pollutant emission reduction in china, strengthen power energy saving is helpful to establish a resource-saving and environment-friendly society and promote a sustainable development of economic society. This paper synchronizes respective advantages of rough set and neural network, puts forward a prediction model-RSBPNN which uses rough set knowledge reduction method to prune the redundant and neural network to build a forecasting model.


2010 ◽  
Vol 2010 (0) ◽  
pp. 58-59 ◽  
Author(s):  
Katumasa Suzuki ◽  
Ken Sugimura ◽  
Sinpei Ota ◽  
Teturou Doi

2013 ◽  
Vol 284-287 ◽  
pp. 2315-2319
Author(s):  
Mao Hsiung Chiang ◽  
Chung Chieh Cheng ◽  
Liang Wang Lee ◽  
Maoh Chin Jiang ◽  
Jhih Hong Lin

Electro-Hydraulic pump-controlled servo systems that have high energy-efficiency can serve as energy-saving system. This paper aims to investigate the servo performance of the electro-hydraulic pump-controlled systems driven by an AC servo motor with variable rotational speed. A constant displacement axial piston pump is used in this research. Thus, the new hydraulic pump-controlled system with an AC motor servo and a constant displacement axial piston pump is investigated for position control of hydraulic servo machines. For that, this paper also develops the control strategy, sign-distance fuzzy sliding mode control, which can simplify the fuzzy rule base through the sliding surface. The developed high response variable rotational speed pump-controlled systems controlled by SD-FSMC are implemented and verified experimentally for positioning control in different stroke and loading conditions.


2015 ◽  
Vol 46 (6) ◽  
pp. 41-47 ◽  
Author(s):  
Shuji KASUYA ◽  
Ken SUGIMURA ◽  
Kenichiro NONAKA ◽  
Katsumasa SUZUKI

Author(s):  
Katsumasa Suzuki ◽  
Shinpei Ota ◽  
Shuji Kasuya ◽  
Ken Sugimura

Efforts to conserve energy have been made in a number of fields due to a shortage of energy resources, such as oil, and the need to protect the Earth’s environment. In the field of hydraulics, energy-saving pump units are very important because they consume less energy. At present, variable displacement type hydraulic pump units (VD pump units) and inverter control type pump units (INV pump units) are widely used. The authors propose using an intermittently operated pump unit coupled with an accumulator (ACC pump unit). It is verified that the ACC pump unit is superior to the others in terms of efficiency, especially when the flow rate to the load is small or the duty ratio for the intermittent work is low. However, the stop/restart operation of the electric motor for the pump drive is repeated frequently, and the instantaneous electric power consumed by the electric motor is more than six times the rated electricity when the pump is restarted. Therefore, we decreased the excess electricity consumption at pump restart using a method called “hydraulic assist”. Before the electric motor is turned on, high-pressure fluid is supplied to the pump inlet from the accumulator. The pressure at the pump outlet is made to be zero by opening the valve to the tank. The pump essentially works as a hydraulic motor. Then, the electric motor is turned on. In this method, the instantaneous electric power consumption is reduced. This method is also applied to a hydraulic pump unit driven by an internal combustion engine. The intermittent operation of the engine-driven hydraulic pump unit was accomplished using hydraulic assist to restart the pump. In this report, the energy-saving characteristics are shown.


2020 ◽  
Vol 21 (5) ◽  
pp. 331-349
Author(s):  
Zhe-ming Tong ◽  
Shuang-shuang Wu ◽  
Shui-guang Tong ◽  
Yu-qing Yue ◽  
Yuan-song Li ◽  
...  

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