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公开(公告)号:US10936770B2
公开(公告)日:2021-03-02
申请号:US16909753
申请日:2020-06-23
Applicant: HUNAN UNIVERSITY OF SCIENCE AND TECHNOLOGY
Inventor: Xiaoping Zhang , Ji Liu
IPC: G06F30/20 , G05B13/04 , H02M3/158 , G06F111/10
Abstract: A mathematical model between the optimization objects and the optimization objectives is established, with finite-time control parameters as optimization objects, and a total harmonic distortion of an output voltage, a deviation signal of a capacitor voltage and a deviation signal of an output current of BBMC as optimization objectives. A multi-objective optimization satisfaction function and a multi-objective optimization fitness function are established. Multiple sets of optimal finite-time control parameters are iteratively optimized using an adaptive wolf pack algorithm. Functional relationships between respective optimal finite-time control parameters and the corresponding actual output current of BBMC are obtained using a numerical fitting method. Optimal control parameters corresponding to any load are obtained according to the obtained functional relationships. Therefore, the control parameters are adjusted in real time according to the functional relationships and the load of the BBMC-based speed regulation system or the actual output current of BBMC.
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公开(公告)号:US10915692B2
公开(公告)日:2021-02-09
申请号:US16909825
申请日:2020-06-23
Applicant: HUNAN UNIVERSITY OF SCIENCE AND TECHNOLOGY
Inventor: Xiaoping Zhang , Ji Liu , Ruirui Zhang
IPC: G06F30/00 , G06F30/398 , G06F30/20 , G06F111/06 , G06F111/10
Abstract: Taking parameters of a main circuit in a BBMC as optimization objects, and a total harmonic distortion of an output voltage of the BBMC, a deviation between an actual output current and a corresponding rated output current as optimization objectives, a mathematical model between optimization objects and optimization objectives is established. A multi-objective optimization satisfaction function and a multi-objective optimization fitness function are established by selecting a current rating as a rated output current of the BBMC. An adaptive wolf pack optimization algorithm is adopted to obtain a set of optimal parameters of the main circuit. The rated output current is changed to obtain n sets of optimal parameters, and functional relationships between the optimal parameters of the main circuit in the BBMC are obtained using a numerical fitting method. Optimal parameters of the main circuit corresponding to different current ratings are determined according to the functional relationships.
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公开(公告)号:US10804830B1
公开(公告)日:2020-10-13
申请号:US16926369
申请日:2020-07-10
Applicant: HUNAN UNIVERSITY OF SCIENCE AND TECHNOLOGY
Inventor: Xiaoping Zhang , Ji Liu , Ruirui Zhang
Abstract: An actual rotation speed of the asynchronous motor is detected according to the given rotation speed thereof. A given voltage of the asynchronous motor is obtained according to a vector control algorithm and a PI-IP control algorithm and is used as a reference output voltage of the BBMC. A duty cycle of a power switch tube in the BBMC is obtained according to a finite-time control algorithm by taking capacitor voltages and inductor currents in the BBMC as control variables of the speed regulation system. The conducting time of the power switch tube in the BBMC is controlled according to the duty cycle and an output control signal of a corresponding switching cycle, so that an output voltage consistent with its reference output voltage is obtained at an output end of the BBMC, so that the actual rotation speed of the asynchronous motor accurately tracks the given speed.
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公开(公告)号:US20200343843A1
公开(公告)日:2020-10-29
申请号:US16926369
申请日:2020-07-10
Applicant: HUNAN UNIVERSITY OF SCIENCE AND TECHNOLOGY
Inventor: Xiaoping Zhang , Ji Liu , Ruirui Zhang
Abstract: An actual rotation speed of the asynchronous motor is detected according to the given rotation speed thereof. A given voltage of the asynchronous motor is obtained according to a vector control algorithm and a PI-IP control algorithm and is used as a reference output voltage of the BBMC. A duty cycle of a power switch tube in the BBMC is obtained according to a finite-time control algorithm by taking capacitor voltages and inductor currents in the BBMC as control variables of the speed regulation system. The conducting time of the power switch tube in the BBMC is controlled according to the duty cycle and an output control signal of a corresponding switching cycle, so that an output voltage consistent with its reference output voltage is obtained at an output end of the BBMC, so that the actual rotation speed of the asynchronous motor accurately tracks the given speed.
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