This paper focuses on quadratic performance analysis and output feedback gain-scheduling synthesis for parameter-dependent systems with linear fractional representations (LFRs). New quadratic H2 and L2 performance analysis results based on full-block multipliers are given. A novel gain-scheduling output feedback synthesis, which can be regarded as a natural extension of the loop shaping design procedure of McFarlane and Glover to parameter-dependent systems, is proposed. This gain-scheduling technique is computationally attractive and yields a simple and transparent control structure that can be easily implemented. Its effectiveness is illustrated on a benchmark missile autopilot example
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper focuses on quadratic performance analysis and output feedback gain-scheduling synthesis f...
This paper is concerned with the robust gain-scheduling output feedback control problem for a class ...
This paper is concerned with the robust gain-scheduling output feedback control problem for a class ...
This paper presents the solution to the mixed µ synthesis problem, and how to design gain scheduling...
This paper presents the solution to the mixed µ synthesis problem, and how to design gain scheduling...
This paper presents the solution to the mixed µ synthesis problem, and how to design gain scheduling...
Abstract—Traditionally, scheduled controllers are obtained by interpolation of a bank of linear feed...
Output regulation of general uncertain systems is a meaningful yet challenging problem. In spite of ...
Output regulation of general uncertain systems is a meaningful yet challenging problem. In spite of ...
Output regulation of general uncertain systems is a meaningful yet challenging problem. In spite of ...
Systems which vary significantly over an operating envelope, such as fighter aircraft, generally can...
Systems which vary significantly over an operating envelope, such as fighter aircraft, generally can...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper focuses on quadratic performance analysis and output feedback gain-scheduling synthesis f...
This paper is concerned with the robust gain-scheduling output feedback control problem for a class ...
This paper is concerned with the robust gain-scheduling output feedback control problem for a class ...
This paper presents the solution to the mixed µ synthesis problem, and how to design gain scheduling...
This paper presents the solution to the mixed µ synthesis problem, and how to design gain scheduling...
This paper presents the solution to the mixed µ synthesis problem, and how to design gain scheduling...
Abstract—Traditionally, scheduled controllers are obtained by interpolation of a bank of linear feed...
Output regulation of general uncertain systems is a meaningful yet challenging problem. In spite of ...
Output regulation of general uncertain systems is a meaningful yet challenging problem. In spite of ...
Output regulation of general uncertain systems is a meaningful yet challenging problem. In spite of ...
Systems which vary significantly over an operating envelope, such as fighter aircraft, generally can...
Systems which vary significantly over an operating envelope, such as fighter aircraft, generally can...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...
This paper presents a new hybrid switched gain-scheduling control method for missile autopilot desig...