Parameter Tuning Method of Fractional Order piλ Controller Based on Vector Method
A technology of parameter tuning and controller, which is applied to controllers with specific characteristics, electric controllers, etc., which can solve the problems of inconvenient simulation and experiment, complicated controller design, and complicated controller parameter tuning process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2016-01-20
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Abstract
Description
technical field
[0001] The invention belongs to the technical field of fractional order automatic control, and mainly relates to a PI λ Parameter tuning method for structured fractional order controllers. Background technique
[0002] The servo system occupies a very important position in the field of automatic control. It is a feedback control system whose controlled quantities are displacement, speed, and acceleration, and can accurately follow a certain control process. In addition, the working environment of some servo systems is complex, and the system has relatively large uncertainties and hysteresis, as well as changes in inertial loads during the work process, which are typical nonlinear systems. At present, the controllers used in servo systems based on automatic control technology are mostly traditional PID controllers, fuzzy adaptive controllers, and neural network controllers. The control method of the traditional PID controller is too simple, and the control p...
Examples
Embodiment Construction
[0030] Include the following steps:
[0031] (1) Given the mathematical model transfer function of the controlled object system And given the design index bandwidth ω c and the phase margin φ required to maintain stability m , the transfer function of the controller to be tuned is in the form Wherein, said T is a positive real number, s is a Laplacian operator, and K p Indicates the proportional coefficient to be adjusted, K i Indicates the integral coefficient to be adjusted, and λ indicates the integral order to be adjusted;
[0032] (2) The charged object Written in the vector form of the controlled object:
[0033] P ( jω c ) = 1 ( Tω c ) 2 + 1 ...