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基于STM32微控制器的高頻脈寬調制器的設計
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廣東工業(yè)大學(xué)機電工程學(xué)院,,,

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TN761.2

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掃描電極掩模微電解放電加工表面織構新方法及應用基礎研究


Design of High-frequency Pulse Width Modulator Based on STM32 Microcontroller
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    摘要:

    高頻脈沖電源對提高微細電解加工的工藝性有著(zhù)重要的作用,而脈寬調制器經(jīng)驅動(dòng)電路生成IGBT控制信號決定著(zhù)高頻高壓脈沖電源的輸出頻率及占空比。針對電解加工工藝的特殊性,創(chuàng )新性地提出基于32位微型控制器芯片STM32F103RCT6為核心的調頻調占空比的方案。根據脈沖頻率、占空比可調的要求,完成了脈寬調制器的軟硬件設計,通過(guò)編譯運行程序代碼進(jìn)行一系列的調頻、調占空比實(shí)驗并利用示波器采集兩路輸出的PWM波形。實(shí)驗表明,自行研制的脈寬調制器能穩定地調節兩路PWM控制信號的頻率及占空比,驗證了裝置及設計的合理性。

    Abstract:

    The high-frequency pulse power supply plays an important role in improving the manufacturability of the micro electrochemical machining. The pulse width modulator generates the IGBT control signal through the drive circuit to determine the output frequency and duty cycle of the high-frequency and high-voltage pulse power source. In view of the particularity of the electrochemical machining, a innovational solution based on the 32-bit microcontroller chip STM32F103RCT6 as the core to regulate the frequency and the duty cycle, was proposed. According to the requirement of regulating the pulse frequency and duty cycle, it has already completed the hardware and software design of the pulse width modulator in the study. A series of regulating the frequency and the duty cycle experiments were performed by compiling and running the program code, and the PWM waveforms of the two outputs were collected by an oscilloscope. Experiments show that the self-developed pulse width modulator can stably regulate the frequency and duty cycle of the two PWM control signals, verifying the rationality of the device and design.

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溫亮,郭鐘寧,陳朝大,陳曉磊.基于STM32微控制器的高頻脈寬調制器的設計計算機測量與控制[J].,2018,26(12):97-100.

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歷史
  • 收稿日期:2018-06-04
  • 最后修改日期:2018-06-04
  • 錄用日期:2018-07-03
  • 在線(xiàn)發(fā)布日期: 2018-12-21
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