[1]
Amarir S., Al-Haddad K., in: A modeling technique to analyze the impact of inverter supply voltage and cable length on industrial motor-drives (IEEE Trans. J. Power Electronics, 2008), pp.753-762.
DOI: 10.1109/tpel.2007.915773
Google Scholar
[2]
Behera R.K., Das S.P., in: Multilevel converter fed induction motor drive for industrial and traction drive (IEEE Trans. J. Power Electronics), Vol. 29 Issue. 5, pp.28-32.
DOI: 10.1109/mpot.2010.937049
Google Scholar
[3]
Kiam Heong Ang, Chong G., Yun Li, in: PID control system analysis, design, and technology (IEEE Trans. J. Control Systems Technology), Vol. 13, Issue. 4, pp.559-576.
DOI: 10.1109/tcst.2005.847331
Google Scholar
[4]
Rubaai A., Jerry J., in: Hybrid fuzzy Bang-Bang mode controller for electric motor drives applications, Proc. of Int. Conf. on Industry Applications Society Annual Meeting (IAS 2011), Orlando, FL (USA), Oct. 2011, pp.1-8.
DOI: 10.1109/ias.2011.6074336
Google Scholar
[5]
Hua Ji, Zhiyong Li, in: Design of neural network PID controller based on brushless DC motor, Proc. of 2nd Int. Conf. on Intelligent Computation Technology and Automation (ICICTA 2009), Changsha (China), Oct. 2009, pp.46-49.
DOI: 10.1109/icicta.2009.479
Google Scholar
[6]
Zhao Jing-bo, Zhou Bing, Bei Shao-yi, in: Bang-Bang-PID control of automotive EPS system under damping condition, Electric Machines and Control, vol. 15, No. 11, Nov. 2011, pp.95-100.
Google Scholar
[7]
Aras M.S.M., Bin Syed Salim S.N., Hoo E.C.S., Razak I.A.B.W.A., Hendra Bin Hairi M., in: Comparison of fuzzy control rules using MATLAB toolbox and Simulink for DC induction motor-speed control, Proc. of Int. Conf. on Soft Computing and Pattern Recognition (SOCPAR 2009), Malacca, Dec. 2009, pp.711-715.
DOI: 10.1109/socpar.2009.143
Google Scholar
[8]
Xuejie Wang, Yong Yang, Wei Liu, in: Simulation of vector controlled adjustable speed system of induction motor based on Simulink, Proc. of Int. Conf. on Computer Science and Service System (CSSS 2011), Nanjing(China), Jun. 2011, pp.2563-2566.
DOI: 10.1109/csss.2011.5974373
Google Scholar
[9]
Shaosheng Fan, Haizhou Zhu, in: Simulation of the fuzzy PID control system for brushless DC motors based on MATLAB, Proc. of Int. Conf. on Automatic Control and Artificial Intelligence (ACAI2012), Xiamen(China), Mar. 2012, pp.1854-1857.
DOI: 10.1049/cp.2012.1353
Google Scholar
[10]
Joice C.S., Paranjothi S.R., Kumar V.J.S. in: Digital control strategy for four quadrant operation of three phase BLDC motor with load variations (IEEE Trans. J. Industrial Informatics), Vol. 9, Issue. 2, May. 2013, pp.974-982.
DOI: 10.1109/tii.2012.2221721
Google Scholar
[11]
Sathyan A., Milivojevic N., Young-Joo Lee, Krishnamurthy M., Emadi A., in: An FPGA-Based novel digital PWM control scheme for BLDC motor drives (IEEE Trans. J. Industrial Electronics), Vol. 56, Issue. 8, Aug. 2009, pp.3040-3049.
DOI: 10.1109/tie.2009.2022067
Google Scholar
[12]
J.G. Ziegler, N.B. Nichols, in: Optimum settings for automatic controllers (IEEE Transl. J. ASMS) , 1942, Vol. 64, pp.759-768.
Google Scholar
[13]
Karl J. Astrom, Tore Hagglund, in: PID Controllers: Theory, Design, and Tuning, 2nd ed, United States of America, 1988, in press.
Google Scholar
[14]
Rubaai A., Jerry J., in: dSPACE DSP-based Real-Time implementation of fuzzy switching Bang-Bang controller for automation and appliance industry, Proc. of Int. Conf. on Industry Applications Society Annual Meeting (IAS 2010), Houston, TX (USA), Oct. 2010, pp.1-8.
DOI: 10.1109/ias.2010.5614479
Google Scholar