Fuzzy predictive control system and method for power supply for electrostatic dust removal

A technology of electrostatic dust removal and fuzzy prediction, which is applied in the field of high-voltage electrostatic dust removal, can solve problems such as difficulty in establishing accurate mathematical models and low cost of controller design, and achieve good adaptability, enhanced self-adaptive ability, and reduced dependence

A technology of electrostatic dust removal and fuzzy prediction, which is applied in the field of high-voltage electrostatic dust removal, can solve problems such as difficulty in establishing accurate mathematical models and low cost of controller design, and achieve good adaptability, enhanced self-adaptive ability, and reduced dependence

CN105170333BInactive Publication Date: 2018-01-30JIANGSU UNIV OF SCI & TECH

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  • Fuzzy predictive control system and method for power supply for electrostatic dust removal
  • Fuzzy predictive control system and method for power supply for electrostatic dust removal
  • Fuzzy predictive control system and method for power supply for electrostatic dust removal

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Embodiment Construction

[0023] see figure 1 , the fuzzy prediction control system 2 of the power supply for electrostatic precipitation of the present invention is connected to the main circuit 1 of the power supply system for electrostatic precipitation. The main circuit 1 of the power supply system for electrostatic precipitator includes three-phase AC power supply (U, V, W) 10, EMI filter 11, three-phase rectifier module 12, full-bridge inverter circuit 13, resonant capacitor group 14, high Frequency transformer 15 and high-voltage rectifier silicon stack 16 . The three-phase rectification module 12 adopts a three-phase bridge rectification method. A series-parallel resonant network is formed by the resonant capacitor group 14, the equivalent leakage inductance and distributed capacitance of the high-frequency transformer 15. The high frequency transformer 15 is a high turns ratio high frequency step-up transformer. The output of the high-voltage rectifier silicon stack 16 is connected to the p...

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Abstract

The invention discloses a fuzzy prediction control system and method for a power supply for electrostatic dust removal. The analog signal acquisition unit converts the collected analog signal into an electrical signal, performs filtering and other adjustments, and then outputs it to a T-S fuzzy controller. The T-S fuzzy The controller first identifies the antecedent and conclusion part of the T-S fuzzy model according to the conditioned signal, obtains the T-S fuzzy model, then converts the T-S model into a step response model, and outputs the step response model to the prediction The controller 23 is used as a predictive model; the predictive controller uses the step response model as a predictive model to perform rolling optimization and feedback correction, and output the control signal to the digital logic unit; the control signal is used as a drive signal for controlling the drive unit after passing through the digital logic unit. Fuzzy predictive control of the power supply; solves the problem that the electrostatic precipitator system is difficult to establish a mathematical model, and reduces the dependence of the predictive controller on the precise mathematical model.

Description

technical field [0001] The invention relates to the technical field of high-voltage electrostatic precipitation, in particular to a fuzzy prediction control system and method for a high-frequency high-voltage power supply for electrostatic precipitation. Background technique [0002] The high-voltage electrostatic precipitator technology can process dust with a wide range of particle size and small pressure loss, and can handle high-temperature gas. The efficiency of electrostatic precipitator mainly depends on the driving speed of dust particles, and the driving speed increases with the increase of the charging field strength E and the dust collecting field strength Ep (for a single-zone electrostatic precipitator, E=Ep). In order to achieve higher dust removal efficiency, it is necessary to increase the electric field strength as much as possible. The field strength is related to the corona current, which is proportional to the plate voltage. The control of the electric ...

Claims

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Application Information

Patent Timeline
30 Jan 2018
Publication
CN105170333B
IPC
B03C3/68
Inventors
曾庆军; 吴尚