Experimental validation of interval-based sliding mode control for solid oxide fuel cell systems
暂无分享,去创建一个
[1] Andreas Rauh,et al. Reliable Control and Disturbance Rejection for the Thermal Behavior of Solid Oxide Fuel Cell Systems , 2012 .
[2] Luc Jaulin,et al. Applied Interval Analysis , 2001, Springer London.
[3] Andreas Rauh,et al. Interval Methods for Control-Oriented Modeling of the Thermal Behavior of High-Temperature Fuel Cell Stacks , 2012 .
[4] Lars Imsland,et al. Control strategy for a solid oxide fuel cell and gas turbine hybrid system , 2006 .
[5] Andreas Rauh,et al. Sensitivity-Based State and Parameter Estimation for Fuel Cell Systems , 2012, ROCOND.
[6] Andreas Rauh,et al. Verified Stability Analysis for Interval-Based Sliding Mode and Predictive Control Procedures with Applications to High-Temperature Fuel Cell Systems , 2013, NOLCOS.
[7] Andreas Rauh,et al. Experimental parameter identification for a control-oriented model of the thermal behavior of high-temperature fuel cells , 2011, 2011 16th International Conference on Methods & Models in Automation & Robotics.
[8] Andreas Rauh,et al. Thermal behavior of high-temperature fuel cells: reliable parameter identification and interval-based sliding mode control , 2013, Soft Comput..
[9] Anna G. Stefanopoulou,et al. Control of Fuel Cell Power Systems: Principles, Modeling, Analysis and Feedback Design , 2004 .
[10] Andreas Rauh,et al. Parameter identification and observer-based control for distributed heating systems – the basis for temperature control of solid oxide fuel cell stacks , 2012 .