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Synergetic Control for HVAC System Control and VAV Box Fault Compensation

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International Journal of Applied Mathematics and Computer Science
Information Technology for Systems Research (special section, pp. 427-515), Piotr Kulczycki, Janusz Kacprzyk, László T. Kóczy, Radko Mesiar (Eds.)

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Afram, A. and Janabi-Sharifi, F. (2014). Theory and applications of HVAC control systems—A review of model predictive control (MPC), Building and Environment72: 343–355.10.1016/j.buildenv.2013.11.016Search in Google Scholar

Afram, A. and Janabi-Sharifi, F. (2017). Supervisory model predictive controller (MPC) for residential HVAC systems: Implementation and experimentation on archetype sustainable house in Toronto, Energy and Buildings154: 268–282.10.1016/j.enbuild.2017.08.060Search in Google Scholar

Aftab, M., Chen, C., Chau, C.-K. and Rahwan, T. (2017). Automatic HVAC control with real-time occupancy recognition and simulation-guided model predictive control in low-cost embedded system, Energy and Buildings154: 141–156.10.1016/j.enbuild.2017.07.077Search in Google Scholar

Bai, J. and Zhang, X. (2007). A new adaptive (PI) controller and its application in (HVAC) systems, Energy Conversion and Management48(4): 1043–1054.10.1016/j.enconman.2006.10.023Search in Google Scholar

Bengea, S.C., Li, P., Sarkar, S., Vichik, S., Adetola, V., Kang, K., Lovett, T., Leonardi, F. and Kelman, A.D. (2015). Fault-tolerant optimal control of a building (HVAC) system, Science and Technology for the Built Environment21(6): 734–751.10.1080/23744731.2015.1057085Search in Google Scholar

Bouchama, Z., Essounbouli, N., Harmas, M., Hamzaoui, A. and Saoudi, K. (2016). Reaching phase free adaptive fuzzy synergetic power system stabilizer, International Journal of Electrical Power & Energy Systems77: 43–49.10.1016/j.ijepes.2015.11.017Search in Google Scholar

Chabir, K., Sauter, D., Gayed, M.K.B. and Abdelkrim, M.N. (2008). Design of an adaptive Kalman filter for fault detection of networked control systems, 16th Mediterranean Conference on Control and Automation (MED), Ajaccio, France, pp. 1124–1129.10.1109/MED.2008.4602275Search in Google Scholar

Chabir, K., Sid, M.A. and Sauter, D. (2014). Fault diagnosis in a networked control system under communication constraints: A quadrotor application, International Journal of Applied Mathematics and Computer Science24(4): 809–820, DOI: 10.2478/amcs-2014-0060.10.2478/amcs-2014-0060Open DOISearch in Google Scholar

Chen, J. and Patton, R.J. (2012). Robust Model-based Fault Diagnosis for Dynamic Systems, Springer Science & Business Media, Norwell, MA.Search in Google Scholar

Chinde, V., Kosaraju, K., Kelkar, A., Pasumarthy, R., Sarkar, S. and Singh, N. (2017). A passivity-based power-shaping control of building HVAC systems, Journal of Dynamic Systems, Measurement, and Control139(11): 111007.10.1115/1.4036885Search in Google Scholar

Darure, T., Yamé, J.-J. and Hamelin, F. (2016). Model-based fault-tolerant control of VAV damper lock-in place failure in a multizone building, 14th International Conference on Control, Automation, Robotics and Vision (ICARCV), Phuket, Tailand, pp. 1–6.10.1109/ICARCV.2016.7838699Search in Google Scholar

Du, Z., Fan, B., Chi, J. and Jin, X. (2014). Sensor fault detection and its efficiency analysis in air handling unit using the combined neural networks, Energy and Buildings72: 157–166.10.1016/j.enbuild.2013.12.038Search in Google Scholar

Jafarov, E.M. (2005). Design modification of sliding mode observers for uncertain MIMO systems without and with time-delay, Asian Journal of Control7(4): 380–392.10.1111/j.1934-6093.2005.tb00400.xSearch in Google Scholar

Jiang, Z. and Dougal, R.A. (2004). Synergetic control of power converters for pulse current charging of advanced batteries from a fuel cell power source, IEEE Transactions on Power Electronics19(4): 1140–1150.10.1109/TPEL.2004.830044Search in Google Scholar

Kim, W. and Katipamula, S. (2018). A review of fault detection and diagnostics methods for building systems, Science and Technology for the Built Environment24(1): 3–21.10.1080/23744731.2017.1318008Search in Google Scholar

Kolesnikov, A., Veselov, G. and Kolesnikov, A. (2000). Modern Applied Control Theory: Synergetic Approach in Control Theory, TRTU, Moscow/Taganrog, pp. 4477–4479.Search in Google Scholar

Kuz’menko, A., Kolesnikov, A. and Kolesnitchenko, D. (2015). Novel robust control of hydrogenerator: The synergetic approach, IFAC-PapersOnLine48(11): 451–456.10.1016/j.ifacol.2015.09.227Search in Google Scholar

Medjbeur, L., Harmas, M., Benaggoune, S. and Zehar, K. (2018). An adaptive fuzzy h synergetic approach to robust control, Journal of Dynamic Systems, Measurement, and Control140(1): 011008.10.1115/1.4037330Search in Google Scholar

Nusawardhana, A., Zak, S. and Crossley, W. (2007). Nonlinear synergetic optimal controllers, Journal of Guidance, Control, and Dynamics30(4): 1134–1147.10.2514/1.27829Search in Google Scholar

Patton, R.J., Frank, P.M. and Clarke, R.N. (1989). Fault Diagnosis in Dynamic Systems: Theory and Application, Prentice-Hall, Upper Saddle River, NJ.Search in Google Scholar

Qi, X., Theilliol, D., He, Y. and Han, J. (2017). An active fault-tolerant control framework against actuator stuck failures under input saturations, International Journal of Applied Mathematics and Computer Science27(4): 749–761, DOI: 10.1515/amcs-2017-0052.10.1515/amcs-2017-0052Open DOISearch in Google Scholar

Sauter, D. and Hamelin, F. (1999). Frequency-domain optimization for robust fault detection and isolation in dynamic systems, IEEE Transactions on Automatic Control44(4): 878–882.10.1109/9.754839Search in Google Scholar

Sauter, D., Yamé, J., Aubrun, C. and Hamelin, F. (2015). Design of fault isolation filter for control reconfiguration: Application to energy efficiency control in buildings, 23rd Mediterranean Conference on Control and Automation (MED), Torremolinos, Spain, pp. 197–202.10.1109/MED.2015.7158750Search in Google Scholar

Seybold, L., Witczak, M., Majdzik, P. and Stetter, R. (2015). Towards robust predictive fault-tolerant control for a battery assembly system, International Journal of Applied Mathematics and Computer Science25(4): 849–862, DOI: 10.1515/amcs-2015-0061.10.1515/amcs-2015-0061Open DOISearch in Google Scholar

Slotine, J.-J.E. and Li, W. (1991). Applied Nonlinear Control, Prentice Hall, Englewood Cliffs, NJ.Search in Google Scholar

Utkin, V.I. (2013). Sliding Modes in Control and Optimization, Springer Science & Business Media.Search in Google Scholar

Veselić, B., Draženović, B. and Milosavljević,Č. (2014). Sliding manifold design for linear systems with unmatched disturbances, Journal of the Franklin Institute351: 1920–1938.10.1016/j.jfranklin.2014.01.011Search in Google Scholar

Yu, Y., Woradechjumroen, D. and Yu, D. (2014). A review of fault detection and diagnosis methodologies on air-handling units, Energy and Buildings82: 550–562.10.1016/j.enbuild.2014.06.042Search in Google Scholar

Zhu, W., Zheng, Y., Dai, J. and Zhou, J. (2017). Design of integrated synergetic controller for the excitation and governing system of hydraulic generator unit, Engineering Applications of Artificial Intelligence58: 79–87.10.1016/j.engappai.2016.12.001Search in Google Scholar

eISSN:
2083-8492
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Mathematics, Applied Mathematics