Items where Subject is "H Engineering > H190 General Engineering not elsewhere classified"

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Number of items at this level: 17.

Computer Aided Design

Zolotas, Argyrios (1998) Computer-aided design for robust control using the QFT method. Other thesis, University of Leeds.

Control Systems

Zolotas, Argyrios (1998) Computer-aided design for robust control using the QFT method. Other thesis, University of Leeds.

Optimisation

Zolotas, Argyrios (1998) Computer-aided design for robust control using the QFT method. Other thesis, University of Leeds.

PID controllers

Zolotas, Argyrios (1998) Computer-aided design for robust control using the QFT method. Other thesis, University of Leeds.

Robust control

Zolotas, Argyrios (1998) Computer-aided design for robust control using the QFT method. Other thesis, University of Leeds.

Singular value decomposition (SVD)

Zolotas, Argyrios (1998) Computer-aided design for robust control using the QFT method. Other thesis, University of Leeds.

active fault tolerance

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

adaptive control

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

control applications

Yang, Tai C. and Zolotas, Argyrios and Wren, Timothy J. and Yu, Hong N. (2014) Exploring future directions of control. In: Control 2014, July 2014, Loughborough.

control theory

Yang, Tai C. and Zolotas, Argyrios and Wren, Timothy J. and Yu, Hong N. (2014) Exploring future directions of control. In: Control 2014, July 2014, Loughborough.

fault accommodation

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

fault-tolerant control

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

future directions of control systems

Yang, Tai C. and Zolotas, Argyrios and Wren, Timothy J. and Yu, Hong N. (2014) Exploring future directions of control. In: Control 2014, July 2014, Loughborough.

geometric approach

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

health monitoring

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

high redundancy actuator

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

parameter estimation

Steffen, Thomas and Zolotas, Argyrios and Dixon, Roger and Goodall, Roger (2009) Adaptive control of a High Redundancy Actuator using the geometric approach. In: 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes, 30 June - 3 July 2009, Barcelona, Spain.

This list was generated on Thu Jan 23 09:30:12 2020 GMT.