Title :
A comparison of non-stationary, type-2 and dual surface fuzzy control
Author :
Benatar, Naisan ; Aickelin, Uwe ; Garibaldi, Jonathan M.
Author_Institution :
Sch. of Comput. Sci., Univ. of Nottingham, Nottingham, UK
Abstract :
Type-1 fuzzy logic has frequently been used in control systems. However this method is sometimes shown to be too restrictive and unable to adapt in the presence of uncertainty. In this paper we compare type-1 fuzzy control with several other fuzzy approaches under a range of uncertain conditions. Interval type-2 and non-stationary fuzzy controllers are compared, along with ´dual surface´ type-2 control, named due to utilising both the lower and upper values produced from standard interval type-2 systems. We tune a type-1 controller, then derive the membership functions and footprints of uncertainty from the type-1 system and evaluate them using a simulated autonomous sailing problem with varying amounts of environmental uncertainty. We show that while these more sophisticated controllers can produce better performance than the type-1 controller, this is not guaranteed and that selection of Footprint of Uncertainty (FOU) size has a large effect on this relative performance.
Keywords :
fuzzy control; fuzzy set theory; uncertain systems; control systems; dual surface fuzzy control; dual surface type-2 control; environmental uncertainty; footprint of uncertainty; interval type-2 fuzzy controllers; membership functions; nonstationary fuzzy controllers; simulated autonomous sailing problem; sophisticated controllers; standard interval type-2 systems; type-1 controller; type-1 fuzzy control; type-1 fuzzy logic; type-1 system; uncertain conditions; Boats; Control systems; Fuzzy sets; Noise; Robots; Tuning; Uncertainty; Fuzzy Control; Interval Type-2 Fuzzy; Non-stationary; Robot Boat control;
Conference_Titel :
Fuzzy Systems (FUZZ), 2011 IEEE International Conference on
Conference_Location :
Taipei
Print_ISBN :
978-1-4244-7315-1
Electronic_ISBN :
1098-7584
DOI :
10.1109/FUZZY.2011.6007602