DocumentCode :
2116087
Title :
Fuzzy rule based depth controller for variable ballast system of autonomous underwater vehicles
Author :
Xu, Min ; Smith, Samuel M.
Author_Institution :
Dept. of Ocean Eng., Florida Atlantic Univ., Boca Raton, FL, USA
fYear :
1993
fDate :
18-21 Oct 1993
Abstract :
Summary form only given. Variable ballast (VB) systems of autonomous underwater vehicles (AUV) are designed to compensate for changes in weights, variable loads, and displacement which occur during dive so as to keep submersibles at design condition such as neutral buoyancy and zero-trim. VB is also designed to create positive/negative buoyancy, so AW will ascend/descend to a desired depth. VB is composed of variable ballast tanks which may be flooded or blown to attain the required buoyancy. By investigating the dynamic response of VB system, a robust and energy saving depth control strategy is formed. The key point is to find a critical depth point at which a certain amount of water needs to be added to or subtracted from the VB tank. The critical depth point has nonlinear relationship with the desired depth, initial set weight, and VB dynamic parameters. The use of fuzzy logic controller is investigated for VB depth control. Fuzzy rules are developed to get the critical depth point. They are derived from qualitative analysis of VB dynamic systems
Keywords :
attitude control; dynamic response; fuzzy control; knowledge based systems; marine systems; autonomous underwater vehicles; buoyancy; critical depth point; depth control; dynamic response; fuzzy logic controller; fuzzy rule based depth controller; qualitative analysis; submersibles; variable ballast system; Automotive engineering; Control systems; Displacement control; Electronic ballasts; Fuzzy control; Fuzzy logic; Fuzzy systems; Oceans; Underwater vehicles; Vehicle dynamics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
OCEANS '93. Engineering in Harmony with Ocean. Proceedings
Conference_Location :
Victoria, BC
Print_ISBN :
0-7803-1385-2
Type :
conf
DOI :
10.1109/OCEANS.1993.325973
Filename :
325973
Link To Document :
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