Title :
Energy Efficient Lathe Turret Design Using Load Sensing Control Scheme
Author :
Jyh-Chyang Renn ; Wen-Jen Hsu ; Wei-Cheng Liao
Author_Institution :
Dept. of Mech. Eng., Nat. Yunlin Univ. of Sci. & Technol., Yunlin, Taiwan
Abstract :
Hydraulic system plays an important role in many power systems such as excavator, braking system of vehicle and machine tool. Generally speaking, hydraulic control system can be divided into two different driving concepts. The first one is the well-known valve-controlled system and the second one is the pump-controlled system. The former possesses the feature of fast dynamic response. However, the poor energy-saving performance is its major fault. On the contrary, the pump-controlled system has the significant advantage of energy-saving which meets the current demand in modern machine design, but has the disadvantage of slower dynamic response. With the advancement of electric-motor system, however, this disadvantage has been greatly improved. In this paper, the simulation analysis of a newly developed energy-efficient hydraulic CNC lathe turret using load sensing control scheme is presented. Instead of the conventional fixed displacement hydraulic pump, the new energy-efficient system utilizes an internal gear pump with AC servo motor as its driving power source. In addition, closed-loop control schemes using PID control is adopted. From simulation results, the new energy-efficient design can reduce the waste of the output flow-rate of the pump through the relief valve that generally happens in conventional hydraulic lathe and then achieve the purpose of designing an energy-efficient hydraulic lathe.
Keywords :
AC motors; closed loop systems; computerised numerical control; dynamic response; energy conservation; hydraulic systems; load regulation; machine tools; pumps; servomotors; three-term control; valves; AC servo motor; PID control; closed-loop control schemes; driving power source; electric-motor system; energy-efficient hydraulic CNC lathe turret design; energy-saving; energy-saving performance; fast dynamic response; fixed displacement hydraulic pump; hydraulic control system; internal gear pump; load sensing control scheme; machine design; machine tool; output flow-rate; power systems; pump-controlled system; relief valve; valve-controlled system; Energy efficiency; Induction motors; Load modeling; Power demand; Sensors; Servomotors; AC servo motor; CNC lathe turret; energy efficient; pump-controlled system;
Conference_Titel :
Computer, Consumer and Control (IS3C), 2014 International Symposium on
Conference_Location :
Taichung
DOI :
10.1109/IS3C.2014.26