两种功率因数校正电路对比研究
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仙桃职业学院,湖北仙桃 433000

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TM714

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2017年度湖北省教育厅科学研究计划指导性项目“基于移动互联和CAN总线的汽车远程控制终端设计”(B2018533)


Comparative Study of two power factor correction circuits
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Xiantao Vocational College, HuBei Xiantao, 433000

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    摘要:

    针对电网运行中设备所作无用功较大的问题,为改善这种情况,增加系统有功输出,本研究在电网中设计了微控制(MCU)校正电路和智能功率模块(IPM)校正电路对比方案。结果为MCU采用的是微控制单元和PWM联合控制技术;IPM采用大功率晶体管进行电路核准校正。对两种电路进行幅频特性和电源畸变校正效果进行对比;之后对两种电路的参数变化进行对比。分析出两种校正电路的优缺点和各自适用范围。结果表明通过Proteus仿真,发现MCU校正电路和IPM校正电路测试功率临界点为3.5KW;应用MATLAB对两种校正方法稳定性进行分析,发现MCU临界稳定校正功率为3.0KW,IPM临界稳定校正功率为2.8KW。经过对比研究分析两种校正方法的优缺点,明确了两种校正电路的适用条件。

    Abstract:

    Aiming at the problem of large useless power of equipment in power grid operation, in order to improve this situation and increase the active power output of the system, this study designed a comparison scheme of micro-control (MCU) correction circuit and intelligent power module (IPM) correction circuit in the power grid. The result is that the MCU uses a micro-control unit and PWM combined control technology; IPM uses high-power transistors for circuit verification and correction. The amplitude-frequency characteristics and power distortion correction effects of the two circuits are compared; then the parameter changes of the two circuits are compared. The advantages and disadvantages of the two correction circuits and their respective scope of application are analyzed. The results show that through Proteus simulation, it is found that the critical point of the test power of the MCU correction circuit and the IPM correction circuit is 3.5KW; the stability of the two correction methods is analyzed using MATLAB, and it is found that the MCU critical stability correction power is 3.0KW, and the IPM critical stability correction power is 2.8KW. After comparative study and analysis of the advantages and disadvantages of the two correction methods, the applicable conditions of the two correction circuits are clearly defined.

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付晓军.两种功率因数校正电路对比研究[J].电子测量技术,2021,44(4):15-20

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  • 在线发布日期: 2024-11-25
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