Items where Author is "Zhang, Hongwei"

Up a level
Export as [feed] Atom [feed] RSS
Group by: Item Type | Full Text | No Grouping
Number of items: 40.

Article

file
O’BRIEN, Alexander, ZHANG, Hongwei, ALLWOOD, Daniel M. and RAWSTHORNE, Andy (2024). From data to draught: Modelling and predicting mixed-culture beer fermentation dynamics using autoregressive recurrent neural networks. Modelling, 5 (1), 201-222.

file
SAAD, Sameh, BAHADORI, RAMIN, BHOVAR, Chandan and ZHANG, Hongwei (2023). Industry 4.0 and Lean Manufacturing - A systematic review of the state of the art literature and key recommendations for future research. International Journal of Lean Six Sigma.

file
OLUWOLE-OJO, Oluwaloba Nifemi, ZHANG, Hongwei, HOWARTH, Martin and XU, Xu (2023). Energy Consumption Analysis of a Continuous Flow Ohmic Heater with Advanced Process Controls. Energies, 16 (2): 868.

file
MENG, Qingbo, ZHANG, Hongwei and HOWARTH, Martin (2022). Comparison between real-time auto-tuning PID and conventional PID controller for a dairy industrial evaporation process. International Journal of Modelling, Identification and Control, 40 (1), 27-35.

file
MENG, Qingbo, ZHANG, Hongwei and HOWARTH, Martin (2022). Comparison between Real-Time Auto-Tuning PID and Conventional PID Controller for a Dairy Industrial Evaporation Process. International Journal of Modelling, Identification and Control, 40 (1), 27-35.

DING, Yunfei, CHEN, Zijun, ZHANG, Hongwei, WANG, Xin and GUO, Ying (2022). A short-term wind power prediction model based on CEEMD and WOA-KELM. Renewable Energy, 189, 188-198.

file
KOKKRATHOKE, Surapong, RAWSTHORNE, Andy, ZHANG, Hongwei and XU, Xu (2022). Nonlinear Optimal Stabilising Control of a Two-wheel Robot. International Journal of Modelling, Identification and Control, 38 (2), 175-189.

file
OLUWOLE-OJO, Oluwaloba, ZHANG, Hongwei, HOWARTH, Martin and XU, Xu (2021). Model based design and validation of a batch ohmic heating system. Modelling, 2 (4), 641-658.

file
ZHANG, Hongwei, MOHAMED, Ahmed, BREIKIN, Timofei and HOWARTH, Martin (2021). Modelling and Simulation of an Ohmic Heating Process. Open Journal of Modelling and Simulation, 9 (1), 26-42.

file
HAIRE, Matthew, XU, Xu, ALBOUL, Lyuba, PENDERS, Jacques and ZHANG, Hongwei (2019). Ship hull inspection using a swarm of autonomous underwater robots: a Search algorithm. 2019 IEEE International Symposium on Safety, Security, and Rescue Robotics (SSRR).

file
SALEH, Ibrahim, ALI, Rashid and ZHANG, Hongwei (2018). Experimental testing and validation of the mathematical model for a self-humidifying PEM fuel cell. Journal of Materials Science and Chemical Engineering, 6 (4), 202-218.

file
SALEH, Ibrahim M., ALI, Rashid and ZHANG, Hongwei (2018). Environmental Impact of High Altitudes on the Operation of PEM Fuel Cell Based UAS. Energy and Power Engineering, 10 (03), 87-105.

file
DING, Y., ZHU, C. and ZHANG, Hongwei (2017). A type of distribution control method for nonlinear stochastic systems. Paiguan Jixie Gongcheng Xuebao/Journal of Drainage and Irrigation Machinery Engineering, 35 (9), 774-779.

file
SALEH, Ibrahim M. M., ALI, Rashid and ZHANG, Hongwei (2016). Simplified mathematical model of proton exchange membrane fuel cell based on horizon fuel cell stack. Journal of Modern Power Systems and Clean Energy, 4 (4), 668-679.

ZHANG, Hongwei (2008). Optimal control of a fed-batch yeast fermentation process based on Least Square Support Vector Machine. International Journal of Engineering Systems Modelling and Simulation, 1 (1), 63-68.

ZHANG, Hongwei, LIAN, Zhihong, YAN, Kun, SUN, Yaowei, YUAN, Jiahai and ZHANG, Zhizheng (2006). Decision support for choice optimal power generation projects: Fuzzy comprehensive evaluation model based on the electricity market. Energy Policy, 34 (17), 3359-3364.

ZHANG, Hongwei, KLAVENESS, B and VAGAPOV, Y (2006). Least square support vector machine based soft-sensing for fed-batch yeast fermentation - A comparative study. World Journal of Engineering, 3 (4), 1-8.

ZHANG, Hongwei, ZOUAOUI, Zoubir and LENNOX, Barry (2005). A COMPARATIVE STUDY OF SOFT-SENSING METHODS FOR FED-BATCH FERMENTATION PROCESSES. IFAC Proceedings Volumes, 38 (1), 55-60.

LENNOX, B, ZHANG, Hongwei, LOVETT, D and SANDOZ, D (2004). An integrated approach to advanced process control and condition monitoring. Computing and Control Engineering Journal, 15 (1), 32-37.

ZHANG, Hongwei and LENNOX, Barry (2004). Integrated condition monitoring and control of fed-batch fermentation processes. Journal of Process Control, 14 (1), 41-50.

ZHANG, Hongwei and LENNOX, Barry (2004). Integrated condition monitoring and control of fed-batch fermentation processes. Journal of Process Control, 14 (1), 41-50.

ZHANG, Hongwei and LENNOX, Barry (2003). Multi-way optimal control of a benchmark fed-batch fermentation process. Transactions of the Institute of Measurement and Control, 25 (5), 403-417.

ZHANG, Hongwei, LENNOX, Barry, GOULDING, Peter R. and LEUNG, Andrew Y. T. (2000). A float-encoded genetic algorithm technique for integrated optimization of piezoelectric actuator and sensor placement and feedback gains. Smart Materials and Structures, 9 (4), 552-557.

Book Section

file
SAAD, Sameh, UBEYWARNA, Dasunika and ZHANG, Hongwei (2023). Key Factors Influence the Reconfiguration of Supply Chain Design: A Review Paper. In: THOMAS, Andrew, MURPHY, Lyndon, MORRIS, Wyn, DISPENZA, Vincenzo and JONES, David, (eds.) Advances in Manufacturing Technology XXXVI Proceedings of the 20th International Conference on Manufacturing Research, Incorporating the 37th National Conference on Manufacturing Research, 6th – 8th September 2023, Aberystwyth University, UK. Advances in Transdisciplinary Engineering, 44 . Amsterdam, IOS Press, 132-137.

file
SAAD, Sameh, BHOVAR, Chandan, BAHADORI, Ramin and ZHANG, Hongwei (2021). Industry 4.0 Application in Lean Manufacturing- A Systematic Review. In: Volume 15: Advances in Manufacturing Technology XXXIV. Advances in Transdisciplinary Engineering . IOS press, 341-346.

file
SAAD, Sameh M., BAHADORI, R., ZHANG, Hongwei and ALBAQAMI, Abdulaziz (2021). Technology Roadmapping Application in Smart City's Development. In: Volume 15: Advances in Manufacturing Technology XXXIV. https://ebooks.iospress.nl/bookseries/advances-in-transdisciplinary-engineering . IOS Press, 368-373.

file
HAIRE, Matthew, XU, Xu, ALBOUL, Lyuba, PENDERS, Jacques and ZHANG, Hongwei (2019). Ship Hull Repair Using A Swarm Of Autonomous Underwater Robots: A Self-Assembly Algorithm. In: 2019 European Conference on Mobile Robots (ECMR). IEEE.

file
MENG, Qingbo, ZHANG, Hongwei and HOWARTH, Martin (2019). Performances Comparison between Real-Time Auto-Tuning PID and Conventional PID Controller for a Dairy Industrial Evaporation Process Control. In: 2019 International Conference on Artificial Intelligence, Control and Automation Engineering (AICAE 2019). DEStech Publications, Inc..

file
KALASHNIKOV, Alexander, ZHANG, Hongwei and ABRAMIUK, Misko (2018). Automated recording and processing of lecture attendance data using RFID student cards. In: Proceedings of the VI international scientific conference advanced information systems and technologies AIST-2018. Sumy, Ukraine, Sumy State University, 81-84.

XU, Xu, ZHANG, Hongwei and CARBONE, Giuseppe (2017). Case studies on nonlinear control theory of the inverted pendulum. In: BOUBAKER, Olfa and IRIARTE, Rafael, (eds.) The inverted pendulum in control theory and robotics. From theory to new innovations. IET Control Robotics and Sensors Series (111). London, IET, 225-262.

file
KALASHNIKOV, Alexander, ZHANG, Hongwei, JENNINGS, Jo and ABRAMRIUK, Misko-Marcus (2017). Remote laboratory: using Internet-of-Things (IoT) for E-learning. In: Comparison of the responsiveness of ultrasonic oscillating temperature sensors (UOTSes) and conventional sensors to temperature inflection points. Springer, 43-46.

BUTLER, Dean and ZHANG, Hongwei (2012). Intelligent software sensors and process prediction for glass container forming processes based on multivariate statistical process control techniques. In: Proceedings of 2012 UKACC International Conference on Control. IEEE, 281-285.

ZHANG, Hongwei (2009). Software Sensors and Their Applications in Bioprocess. In: NICOLETTI, Maria do Carmo and JAIN, Lakhmi C., (eds.) Computational Intelligence Techniques for Bioprocess Modelling, Supervision and Control. Studies in Computational Intelligence, 218 (218). Springer-Verlag, 25-56.

ZHANG, Hongwei (2008). Intelligent software sensors for fed-batch fermentation processes. In: Proceedings of the UKACC International Conference on Control 2008. University of Manchester.

ZHANG, Hongwei and VAGAPOV, Y. (2006). LS-SVM Based Software Sensor for Fed-batch Yeast Fermentation and Comparative Studies. In: 2006 IEEE International Conference on Electro/Information Technology. IEEE, 564-568.

KATAWALUWA, M., ZHANG, Hongwei, VAGAPOV, Y. and EVANS, J. (2006). Simulation of Wind Heat Generator. In: 2006 IEEE International Conference on Electro/Information Technology. IEEE, 479-482.

BELLOC, C., ZHANG, Hongwei, VAGAPOV, Y. and MORENO, P. (2006). A Step Voltage Response Method for Identification of Induction Motor Parameters at Stand Still. In: 2006 IEEE International Conference on Electro/Information Technology. IEEE, 109-112.

Monograph

file
SMITH, David, WOODROOFE, Nicola, LITTLE, Liam, SLAY, Oliver, HANDFORTH, Rachel, BECKINGHAM, Sue, FIELDING-LLOYD, Beth, ZHANG, Hongwei and LUDWIG, Franziska (2019). Research Informed Teaching a Post Graduate perspective. Project Report. Sheffield Hallam University.

file
ZHANG, Hongwei, SAAD, Sameh and JON, Moody (2018). Harnessing Brexit, Technology and Insight - British manufacturers; maintaining a competitive edge in an age of uncertainty & opportunity. Other. Sheffield Hallam University and SSG Insight.

Conference or Workshop Item

file
ZHANG, Hongwei, OLUWOLE-OJO, Oluwaloba Nifemi, HOWARTH, Martin and XU, Xu (2022). Implementation of advanced real-time process control on a continuous flow ohmic heater. In: The 15th Conference of Food Engineering, Raleigh, North Carolina, USA, 18-21 Sep 2022. The Society of Food Engineering (SoFE). (Unpublished)

This list was generated on Thu Apr 25 16:35:54 2024 UTC.