家电科技 ›› 2023, Vol. 0 ›› Issue (2): 103-107.doi: 10.19784/j.cnki.issn1672-0172.2023.02.019

• 论文 • 上一篇    下一篇

无输入电压检测的高频PFC技术及应用研究

孙玉良1,2, 宋洪强1,2, 厉杰1,2, 虞朝丰1,2, 许升1,2   

  1. 1.青岛海尔智能技术研发有限公司 山东青岛 266101;
    2.数字化家电国家重点实验室 山东青岛 266101
  • 出版日期:2023-04-01 发布日期:2023-06-27
  • 作者简介:孙玉良,硕士学位。研究方向:电机变频驱动。地址:山东省青岛市崂山区海尔路1号海尔信息产业园。E-mail:sunyuliang@haier.com。

Research and application on high frequency PFC without input voltage sensor

SUN Yuliang1,2, SONG Hongqiang1,2, LI Jie1,2, YU Chaofeng1,2, XU Sheng1,2   

  1. 1. Qingdao Haier Smart Technology R&D Co., Ltd. Qingdao 266101;
    2. State Key Laboratory of Digital Home Appliances Qingdao 266101
  • Online:2023-04-01 Published:2023-06-27

摘要: 为了解决家用空调室外机谐波干扰和满足负载对直流电压的需求,驱动板一般采用单相Boost型功率因数校正电路(Power Factor Correction,PFC)。随着功率密度要求的提升,对板载小感量高频PFC技术的需求日益紧迫。提出一种无需输入电压检测的高频PFC控制方案,通过电感电流锁相环控制完成对输入电压相位的跟踪,采用双闭环控制算法完成仿真与实际验证。对比传统的方案具有省略输入电压采样,电路更优化,算法更简便等优势。最终应用在3 P柜机空调上进行验证,其额定运行时功率因数均可达到0.99以上,谐波电流满足国标要求,可靠性试验等验证满足实际使用要求。

关键词: 功率因数校正, 高频PFC控制, 双闭环控制算法, 无输入电压检测

Abstract: In order to reduce the harmonic currents from the outdoor unit of air conditioner and meet the DC voltage demand, single-phase boost power factor correction (PFC) circuit is generally used. With the improvement of power density requirements, the demand for onboard inductance and high carrier frequency PFC technology is increasingly urgent. A high-frequency PFC control scheme without input voltage sensor is proposed. The phase tracking of input voltage is completed by phase-locked loop from input current, and the simulation and practical verification are completed by using double closed-loop control algorithm. Compared with the traditional scheme, which omits input voltage detection, the circuit is more optimized and the algorithm is simpler. Finally, it is applied to 3 P cabinet air conditioner, the power factor can reach more than 0.99 under rated operation, the harmonic current meets the IEC standards, and the reliability test meets the actual requirements.

Key words: Power factor correction, High frequency PFC control, Double closed-loop control algorithm, Without input voltage sensor

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