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Journal ArticleDOI

Constrained Control Allocation

Wayne Durham
- 01 Aug 1993 - 
- Vol. 16, Iss: 4, pp 717-725
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TLDR
In this article, the problem of the allocation of several airplane flight controls to the generation of specified body-axis moments is addressed, and a direct method of allocating these several controls is presented that guarantees the maximum possible moment can be generated within the constraints of the controls.
Abstract
This paper addresses the problem of the allocation of several airplane flight controls to the generation of specified body-axis moments. The number of controls is greater than the number of moments being controlled, and the ranges of the controls are constrained to certain limits. They are assumed to be individually linear in their effect throughout their ranges of motion and independent of one another in their effects. The geometries of the subset of the constrained controls and of its image in moment space are examined. A direct method of allocating these several controls is presented that guarantees the maximum possible moment can be generated within the constraints of the controls. It is shown that no single generalized inverse can yield these maximum moments everywhere without violating some control constraint. A method is presented for the determination of a generalized inverse that satisfies given specifications which are arbitrary but restricted in number. We then pose and solve a minimization problem that yields the generalized inverse that best approximates the exact solutions. The results are illustrated at each step by an example problem involving three controls and two moments.

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Citations
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Proceedings ArticleDOI

Multi-objective Design and Performance Analysis of Incremental Control Allocation-based Flight Control Laws

TL;DR: In this paper , an extension to the existing INCA concept is formulated that isolates this secondary control task from generating primary control demands, and an alternative, but closely related design method based on optimal control principles is proposed that extents the role of the control allocator to active control of the system dynamics.
Proceedings Article

Reconfigurable fault-tolerant control of a vehicle with a steer-by-wire system

TL;DR: In this paper, a synthesis method of a reconfigurable fault-tolerant control system for a steer-by-wire vehicle is proposed, which consists of a linear feedback control law and a control allocator based on online optimization.
Journal ArticleDOI

Control of a Satellite`s Redundant Thrusters by a Control Allocation Method

TL;DR: In this article, a control allocation problem for redundant thrusters is formulated as a linear programming problem which minimizes fuel consumptions with thrusters, constraints, and shown that the proposed method is more efficient than an existing method by numerical examples.
References
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Book

Modern Control Theory

TL;DR: The relationship between state variable and transfer function descriptions of linear feedback control systems is discussed in this paper, along with the relationship between the Cayley Hamilton Theorem and state variable descriptions of systems.
Journal ArticleDOI

Nonlinear inversion flight control for a supermaneuverable aircraft

TL;DR: In this article, the authors discuss the use of nonlinear dynamic inversion in the design of a flight control system for a Superman aircraft and compare it with a more conventional, gain-scheduled system and yield better performance in terms of lateral acceleration, sideslip, and control deflections.
Book ChapterDOI

Generalized Inverse Matrices

Shayle R. Searle
- 01 Dec 1971 - 

Relative control effectiveness technique with application to airplane control coordination

TL;DR: In this paper, a method to select optimal combinations of the control variables of a linear system is reported, where the combinations are chosen so that the control channels have their principal influences on selected fundamental modes of the system.

Preliminary design study of a lateral-directional control system using thrust vectoring

TL;DR: In this article, a preliminary design of a lateral-directional control system for a fighter airplane capable of controlled operation at extreme angles of attack is developed, which is representative of a modern twin-engine high-performance jet fighter, equipped with ailerons, rudder, and independent horizontal-tail surfaces.