[1]
Fu Yongling, Qi Haitao, LMS Imagine. The Lab AMESim, system modeling and simulation instance tutorial [M], Beijing: Beijing University of Aeronautics and Astronautics Press. (2011).
Google Scholar
[2]
Yu Youguan, Gong Guofang, Hu Guoliang , AMESim, simulation technology and its application in the hydraulic system [J], Hydraulic pneumatic seal. 2005(3): 28-31.
Google Scholar
[3]
Zheng Changma, Wu Jianfeng, Ma Chong, et al, Research on the characteristic of PQ pump based on AMESim, Electrical and Mechanical Engineering. 2010, 27(1): 59-61.
Google Scholar
[4]
Dong Chunfang, Zhu Yujie, Feng, Guohong. Long, Pipeline hydraulic system dynamic simulation based on the AMESim[J], Coal mine machinery. 2010, 31(1): 73-75.
Google Scholar
[5]
Wang Biao, Zhao Jingyi, Zeng Hui, et al, Design Simulation of a Two-phase Alternative Hydraulic System Based on AMESim. Hydraulics Pneumatics & Seals, 2010, 30(6): 8-9.
Google Scholar
[6]
Zhang Dabin, Su Ming, Yan Jiduo, et al, Digital Modeling of Hydraulic Axial Piston Pump and its Flux Pulsation Analysis Basing on AMESim[J], Coal Mine Machinery. 2010, 31(1): 100-102.
Google Scholar
[7]
Chen Gang, Fu Zhoudong, Wu Genmao, et al, Dynamic Flow Meter and Intelligent Optimization [J], China Mechanical Engineering. 1994(3).
Google Scholar
[8]
Chen Gang, Ma Yinliang, Fu Zhoudong, et al, Research and Application on a Dynamic Flow Sensor [J], ACTA Metrologica Science. 1997(4).
Google Scholar
[9]
Shu Sijie, Wang Yongsheng, Zhang Jun, Flow Characteristics Simulation Study of External Gear Flow meter Based on MATLAB, Mechanical Engineer. 2011(2): 86-88.
Google Scholar