Uneingeschränkter Zugang

Gas Turbine Aerodynamics Improvement Via a Design of Intelligent Fractional Control


Zitieren

[1] Gravdahl, J. T., Egeland, O. “Moore-Greitzer Axial Compressor Model with Spool Dynamics“, In 36th IEEE Conference on Decision and Control. Part 1 (of 5), San Diego, CA, USA, pp. 4714 – 4719, 1997. DOI: 10.1109/CDC. 1997.649750. Search in Google Scholar

[2] Gravdahl, J. T., Egeland, O. “Compressor surge and rotating stall Modelling and control“, Advances in Industrial Control, Springer Verlag. London Limited, 1998. ISBN: 978-1-4471-0827-6 DOI: 10.1007/978-1-4471-0827-610.1007/978-1-4471-0827-6 Search in Google Scholar

[3] Sari, O., Akhrif, O., Saydy, L. “Qualitative Analysis of an Axial Compressor Model with Non-constant Speed“, In ASME 2011 Power Conference, Denver, Colorado, USA, 2011 (1), pp. 515 – 524, 2011. DOI: 10.1115/power2011-5517210.1115/POWER2011-55172 Search in Google Scholar

[4] Sari, G., Akhrif, O., Saydy, L. “The impact of speed variation on the stability of variable speed axial compressors at efficient operating points“, In American Control Conference, Canada, pp. 404 – 410, 2012. DOI: 10.1109/acc.2012.6314785.10.1109/ACC.2012.6314785 Search in Google Scholar

[5] Sari, G., “Model analysis and nonlinear control of air compressors“, doctoral dissertation. Montreal University, Canada, 2014. Available at: https://publications.polymtl.ca/1532/ [Accessed: date (17/11/2021)] Search in Google Scholar

[6] Sheng, H., Huang,W., Zhang, T., Huang, X. “Robust Adaptive Fuzzy Control of Compressor Surge Using Back-stepping“, Journal for science and engineering 2014 (39), pp. 9301 – 9308, 2014. DOI: 10.1007/s13369-014-1448-110.1007/s13369-014-1448-1 Search in Google Scholar

[7] Moghaddam, J. J., Madani, M. “A decoupled adaptive neuro-fuzzy sliding mode control system to control rotating stall and surge in axial compressors“, Journal of Expert Systems with Applications 38 (4), pp. 4490 – 4496, 2011. DOI: 10.1016/j.eswa. 2010.09.122 Search in Google Scholar

[8] Zaiet, C., Akhrif, O., Saydy, L. “Modeling and Non Linear Control of a Gas Turbine“, In International Symposium on Industrial Electronics ISIE, pp. 2688 – 2694, 2006. DOI: 10.1109/isie.2006.29603710.1109/ISIE.2006.296037 Search in Google Scholar

[9] Debbah, A., Kherfane, H., Berkani, N. “Non-Linear robust control optimization to improving the aerodynamics in gas turbine“, Rev. Sci. Technol., Synthèse 25 (2), pp. 78 – 95, 2019. Available at: https://www.ajol.info/index.php/srst/article/view/192425 Search in Google Scholar

[10] Lin, S., Yang, C., Wu, P., Song, Z. “Fuzzy logic surge control in variable speed axial compressors“, In 10th IEEE International Conference on Control and Automation (ICCA), pp. 1178 – 1183, 2013. DOI: 10.1109/icca.2013.656511810.1109/ICCA.2013.6565118 Search in Google Scholar

[11] Uddin, N., Gravdahl, J. T. “Active compressor surge control using piston actuation“, In ASME 2011 Dynamic Systems and Control Conf. and Bath/ASME Symposium on Fluid Power and Motion Control, American Society of Mechanical Engineers, pp. 69 – 76, 2011. DOI: 10.1115/dscc2011-611310.1115/DSCC2011-6113 Search in Google Scholar

[12] Debbah, A., Kharfene, H. “GA/PSO robust sliding mode control of aerodynamics in gas turbine“, Acta Universitatis Sapientiae Electrical and Mechanical Engineering 10(1), pp. 42 – 66, 2018. DOI: 10.2478/auseme-2018-000310.2478/auseme-2018-0003 Search in Google Scholar

[13] Sheng, H. Huang,W., Zhang, T. “Output feedback control of surge and rotating stall in axial compressors“, Asian Journal of Control 19 (2), pp. 1 – 7, 2017. DOI: 10.1002/asjc.13 8410.1002/asjc.13 Search in Google Scholar

[14] Debbah, A., Kharfene, H., Karboua, A. “Using Robust sliding mode controller to improving the aerodynamic performance of a gas turbine“, In 4th international Seminar on new and renewable energies, pp. 1 – 6, 2016. Available at: http://uraer.cder.dz/sienr/sienr2016/ne/7_Article_A_DEBBAH_C07 Search in Google Scholar

[15] Ghanavati, M., Salahshoor, K., Motlagh, M. R. J., Ramazani, A., Moarefianpour, A. “A novel combined approach for gas compressors surge suppression based on robust adaptive control and backstepping“, Journal of Mechanical Science and Technology 32 (2), pp. 823 – 833, 2018. DOI: 10.1007/s12206-018-0133-110.1007/s12206-018-0133-1 Search in Google Scholar

[16] Bartolini, G., Muntoni, A., Pisano, A., Usai, E. “Compressor surge active control via throttle and CCV actuators: a second-order sliding-mode approach“, In 10th IEEE International Workshop on Variable Structure Systems, pp. 274 – 279, 2008. DOI: 10.1109/vss.2008. 4570720 Search in Google Scholar

[16] Defoort, M., Floquet, T., Kokosy, A., Perruquetti, W. “A novel higher order sliding mode control scheme“, Systems and Control Letters 58 (2), pp. 102 – 108, 2009. DOI: 10.1016/j.sysconle.2008.09.00410.1016/j.sysconle.2008.09.004 Search in Google Scholar

[17] Ozer, H. O., Hacioglu, Y., Yagiz, N. “High order sliding mode control with estimation for vehicle active suspensions“, Transactions of the Institute of Measurement and Control, pp.1 - 14, 2017. DOI: 10.1177/014233121668539410.1177/0142331216685394 Search in Google Scholar

[18] Kumar, J., Azar, A. T., Kumar, V., Rana, K. P. S. “Design of Fractional Order Fuzzy Sliding Mode Controller for Nonlinear Complex Systems“, Chapter 9, Advances in Nonlinear Dynamics and Chaos (ANDC), pp. 249 – 282, 2018. DOI: 10.1016 /b978-0-12-813592-1.00009-x10.1016/B978-0-12-813592-1.00009-X Search in Google Scholar

[19] Delavari, H., Ghaderi, R., Ranjbar, A., Momani, S. “Fuzzy fractional order sliding mode controller for nonlinear system“, Communications in Nonlinear Science and Numerical Simulation 15 (4), pp. 963 – 978, 2010. DOI: 10.1016/j.cnsns. 2009. 05.025 Search in Google Scholar

[20] Du, W.J., Zhang, J.G., Qin, S. “ Hopf bifurcation and sliding mode control of chaotic vibrations in a four-dimensional hyper chaotic System“, IAENG International Journal of Applied Mathematics 46 (2), pp. 247 – 255, 2016. Available at: http://www.iaeng.org/IJAM/issues_v46/issue_2/IJAM_46_2_15 Search in Google Scholar

[21] Lui, J. “Intelligent Control Design and MATLAB Simulation“, 1thed, Springer Singapore, Tsinghua University Press. Beijing, 2018. ISBN:978-981-10-5263-7, https://doi.org/10.1007/978-981-10-5263-710.1007/978-981-10-5263-7 Search in Google Scholar

[22] Chen, D. Y., Liu, Y. X., Ma, X. Y., Zhang, R. F. “No-chattering sliding mode control in a class of fractional-order chaotic systems“, Chinese Physics B 20 (12), 2011. DOI: 10.1088/1674-1056/20/12/12050610.1088/1674-1056/20/12/120506 Search in Google Scholar

[23] Yin, C., Chen, Y., Zhong, S. “Fractional-order sliding mode based extremum seeking control of a class of nonlinear systems“, Automatica Elseiver 50 (12), pp. 3173 – 3181, 2014. DOI: 10.1016/j.automatica.2014.10 Search in Google Scholar

[24] Duc, T. M., Van Hoa, N., Dao, T. P. “Adaptive Fuzzy Fractional-Order Nonsingular Terminal Sliding Mode Control for a Class of Second-Order Nonlinear Systems“, Journal of Computational and Nonlinear Dynamics ASME 13 (3), pp. 1 – 8, 2018. DOI: 10.1115/1.403864210.1115/1.4038642 Search in Google Scholar

[25] Monje, C. A., Chen, Y. Q., Vinagre, B. M., Xue, D., Feliu, V. “Fractional-order Systems and Controls: Fundamentals and Applications“, Springer-Verlag London Limited, 2010. ISBN:978-1-84996-335-0, DOI: 10.1007/978-1-84996-335-010.1007/978-1-84996-335-0 Search in Google Scholar

[26] Likaj, R., L., Shala, A. “Optimisation and control of vehicle suspension using linear quadratic gaussian control“, Strojnícky časopis – Journal of Mechanical Engineering 68 (1), pp. 61 – 68, 2018, DOI: 10.2478/scjme-2018-000610.2478/scjme-2018-0006 Search in Google Scholar

[27] Elesztos, P., Jančo, R., Voštiar, V. “Optimization of welding process using a genetic algorithm“, Strojnícky časopis – Journal of Mechanical Engineering 68 (2), pp. 17 – 24, 2018. DOI: 10.2478/scjme-2018-001410.2478/scjme-2018-0014 Search in Google Scholar

[28] Yanzhi, R., Sanyang, L. “Modified particle swarm optimization algorithm for engineering structural optimization problem“, In 13th International Conference on Computational Intelligence and Security, pp. 504 – 507, 2017. DOI: 10.1109/cis.2017.0011710.1109/CIS.2017.00117 Search in Google Scholar

[29] Coello, C. A. C., Pulido, G. T., Lechuga, M. S. “Handling multiple objectives with particle swarm optimization“, IEEE Transactions on Evolution 8 (3), pp. 256 – 279, 2004. DOI: 10.1109/tevc.2004.82606710.1109/TEVC.2004.826067 Search in Google Scholar

[30] Lin, Q., Liu, S., Zhu, Q., Tang, C., Song, R., Chen, J., Zhang, J. “Particle Swarm Optimization With a Balanceable Fitness Estimation for Many-Objective Optimization Problems“, IEEE Transactions on Evolutionary Computation 22(1), pp. 32 – 46, 2018. DOI: 10.1109/tevc.2016.263127910.1109/TEVC.2016.2631279 Search in Google Scholar

[31] Juneja, M., Nagar, S. K. “Particle swarm optimization algorithm and its parameters: A review“, In International Conference on Control, Computing, Communication and Materials, pp. 1 – 5, 2016. DOI: 10.1109/iccccm.2016.791823310.1109/ICCCCM.2016.7918233 Search in Google Scholar

[32] Khadar, B.,Jagannadha, R. Murahari, K. “Multi-objective optimization of process parameters for powder mixed electrical discharge machining of Inconel X-750 alloy using Taguchi-Topsis approach“, Strojnícky časopis – Journal of mechanical engineering 71(1), pp. 1 – 18, 2021. DOI: 10.2478/scjme-2021-000110.2478/scjme-2021-0001 Search in Google Scholar

[33] Liu, J., Zhang, H., He, K., Jiang, S. “Multi-objective particle swarm optimization algorithm based on objective space division for the unequal-area facility layout problem“, Expert Systems with Applications 102, pp. 179 – 192, 2018. DOI: 10.1016/j.eswa.2018.02.03510.1016/j.eswa.2018.02.035 Search in Google Scholar

[34] Zhang, H., Yue, D., Xie, X., Hu, S., Weng, S. “Pareto-dominance based adaptive multi-objective optimization for hydrothermal coordinated scheduling with environmental emission“, Applied Soft Computing 69, pp. 270 – 287, 2018. DOI: 10.1016/j.asoc.2018.04.05810.1016/j.asoc.2018.04.058 Search in Google Scholar

eISSN:
2450-5471
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
2 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Technik, Maschinenbau, Grundlagen des Maschinenbaus, Mechanik