Voltage transformation circuit control system and method based on automatic optimizing model-free controller

A circuit control, model-free technology, applied in general control systems, control/regulation systems, adaptive control, etc., can solve the problem of inability to achieve online optimization performance comparison of design controller parameters, and reduce time and economic costs. , improve practical reliability, improve and practical effect

Active Publication Date: 2016-07-13
NORTHEASTERN UNIV
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AI Technical Summary

Problems solved by technology

But there are also many problems
Using single-chip microcomputer, DSP, FPGA and other devices as the controller of power electronic devices to control, can not realize the design of the system controller control method, online optimization of controller parameters, real-time parameter modification test, and the performance of various control strategies compare etc.

Method used

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  • Voltage transformation circuit control system and method based on automatic optimizing model-free controller
  • Voltage transformation circuit control system and method based on automatic optimizing model-free controller
  • Voltage transformation circuit control system and method based on automatic optimizing model-free controller

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Embodiment Construction

[0050] The specific embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0051] In this embodiment, taking the Boost converter of a typical circuit in the transformer circuit as an example, the parameters of the Boost converter are: input voltage U=5V, expected output voltage U * =12V, load R=100Ω, switching frequency f=10kHz, input inductance L=0.5mH, output capacitance C=470μF.

[0052] Transformer circuit control system based on automatic optimization model-free controller, such as figure 1 As shown, it includes: a virtual model-free controller with compensation factors, a performance judgment module and a performance optimization module.

[0053] A virtual model-free controller with compensation factors is used to establish a control rate output model with an output compensation factor, the input of which is the collected output voltage of the transformer circuit and the performance of the control rate out...

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Abstract

The invention provides a voltage transformation circuit control system and method based on automatic optimizing model-free controller. The system comprises a virtual model-free controller with a compensation factor, a performance determining module, and a performance optimizing module. The virtual model-free controller with the compensation factor is used for establishing a control rate output module with an output compensation factor. The performance determining module is used for determining an object function according to output voltage required to be achieved by a voltage transformation circuit, and setting an upper limit of the number of performance optimizing times, and controlling the number of optimizing times of the performance optimizing module according to whether the voltage transformation circuit reaches optimal performance at present. The performance optimizing module is used for optimizing the step length sequence of the control rate, the weight parameter of the control rate, and an output rate compensation factor coefficient by using an optimization algorithm so as to obtain the optimized step length sequence of the control rate, the optimized weight parameter of the control rate, and the optimized output rate compensation factor coefficient.

Description

technical field [0001] The invention belongs to the field of controller design, and in particular relates to a control system and method for a transformer circuit based on an automatic optimization model-free controller. Background technique [0002] At present, controllers have been widely used in equipment in various industries, such as energy storage systems of power grids, inverters, converters, transformer circuits, motors, and distributed control. All kinds of small electronic equipment, various smart homes, large industrial equipment, aerospace electronic devices, etc. For today's society, the controller is an indispensable important device in all walks of life, which has very important and irreplaceable significance. [0003] The design of classical controllers generally includes the modeling of the controlled system, the design of related algorithms, the design of hardware circuits, the writing of driver programs, performance testing, and the improvement of experim...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G05B13/02
CPCG05B13/024
Inventor 王占山黄湛钧刘磊牛海莎
Owner NORTHEASTERN UNIV
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