会议专题

Research on a New Azimuth Control Method for Stratospheric Balloon-borne Gondola System

  For a class of non-matching uncertain nonlinear system such as stratospheric balloon-borne gondola azimuth control system, a new robust adaptive multiple sliding mode controller is proposed.In this control method, the virtual and the practical control variables are obtained by designing the multiple sliding modes step-by-step.For avoiding the chattering problem generated by discontinuous input, the traditional sign function is replaced by hyperbolic tangent function.Meanwhile, the CMAC neural network is used to approximate the system uncertainties and the derivative of virtual control input online, which can reduce the conservation of controller parameters design.The system stability analyses show that the control method can guarantee that the output tracking error and slide modes asymptotically convergent to boundary layer.The simulation results show that the controller has higher tracking accuracy, and stronger robust to nonlinear and uncertainty of system, and it also can be applied to other similar non-matching uncertain nonlinear systems.

balloon-borne gondola system azimuth control nonlinear system uncertainties multiple sliding mode robust control

Wang Honghui Yuan Zhaohui Wu Juan

Department of Automatic Control,Northwestem Polytechnical University,Xian 710072,China

国际会议

the 3nd International Conference on Digital Manufacturing & Automation (第三届数字制造与自动化国际会议(ICDMA 2012))

桂林

英文

1033-1039

2012-08-01(万方平台首次上网日期,不代表论文的发表时间)