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Design of aerospace control systems using fractional PID controller

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TLDR
The goal is to control the trajectory of the flight path of six degree of freedom flying body model using fractional PID using particle swarm optimization method to reflect both improved dynamics of the missile system and reduced chattering in the control signal of the controller.
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This article is published in Journal of Advanced Research.The article was published on 2012-07-01 and is currently open access. It has received 55 citations till now. The article focuses on the topics: PID controller & Control theory.

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Citations
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Journal ArticleDOI

Design of a fractional order PID controller for hydraulic turbine regulating system using chaotic non-dominated sorting genetic algorithm II

TL;DR: The chaotic NSGAII algorithm is used as the optimizer to search true Pareto-front of the FOPID controller and designers can implement each of them based on objective functions priority, validate the superiority of the fractional order controllers over the integer controllers.
Journal ArticleDOI

Fractional order PID controller design for LFC in electric power systems using imperialist competitive algorithm

TL;DR: In this paper, a fractional order PID (FOPID) controller was proposed for load frequency control (LFC) in an interconnected power system, which provided two more degrees of freedom in comparison with the conventional PID.
Journal ArticleDOI

Control and switching synchronization of fractional order chaotic systems using active control technique.

TL;DR: The continuous effect of the fractional order parameter of the Lü system where the system response starts stable, passing by chaotic behavior then reaching periodic response as the fractiona-order increases is discussed.
Journal ArticleDOI

Performance and robustness of optimal fractional fuzzy PID controllers for pitch control of a wind turbine using chaotic optimization algorithms.

TL;DR: Simulation results demonstrate that the FOFPID controller can reach to better performance and robustness while guaranteeing fewer fatigue damages in different wind speeds in comparison to FPID, fractional-order PID (FOPID) and gain-scheduling PID (GSPID) controllers.
References
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Book

Automatic control of aircraft and missiles

TL;DR: Inertial cross-coupling is used in this article for lateral autopilots, and it is shown to be useful for self-adaptive auto-pilots.
Book

Inventing Accuracy: A Historical Sociology of Nuclear Missile Guidance

TL;DR: MacKenzie as discussed by the authors argues that it is wrong to assume that missile accuracy (or any other technological artifact) is a natural or inevitable consequence of technological change, and argues that there can be useful and informed intervention in the social processes of weapons construction.
Book

Missile Guidance and Control Systems

TL;DR: In this paper, the authors present a mathematical model for the trajectory of a single-stage ballistic missile, which is based on the D'Alembert's principle of transformation properties of Vectors.
Book

Modern Control Design With MATLAB and SIMULINK

Ashish Tewari
TL;DR: This paper discusses control system design in State--Space, linear systems and Classical Control, and a review of Matrices and Linear Algebra in modern control.
Related Papers (5)
Trending Questions (1)
What are some of the most important aerospace applications of PID control?

The provided paper does not mention specific aerospace applications of PID control. The paper focuses on the design of a fractional PID controller for a six degree of freedom flying body model.