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Three-phase Half-controlled Boost Converter Operating in Quasi-critical Conduction Mode

机译:以准关键导通模式运行的三相半控制升压转换器

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AC-DC converters, which operate in discontinuous conduction mode, can be used as power factor correction. Operating with constant duty cycle, the control system presents low complexity, however, for low static voltage gains, the input current is not sinusoidal and has a high low order harmonic content, can going beyond the limits imposed by international norms and standards. As an alternative, an analysis and simulation of the three-phase semi-controlled boost rectifier in quasi-critical conduction mode is presented in this paper. This conduction mode ensures that the input current will follow a sinusoidal form, suppressing the use of sensors or current control meshes, providing greater robustness to converter. In addition, the quasi-critical mode maintains some advantages of the discontinuous operation mode, for example, the zero-current-switching during the turn-on of the switches, the simplicity of control system and the lower cost. In this configuration, the current stress in semiconductors are divided and, a single pulse is necessary for switch conduction. The results presented prove that occurs the power factor correction with harmonic current content reduction in low frequency.
机译:在不连续导通模式下操作的AC-DC转换器可用作功率因数校正。使用恒定占空比操作,控制系统具有低复杂度,但是对于低静态电压增益,输入电流不是正弦的,并且具有高级谐波含量,可以超出国际规范和标准的限制。作为替代方案,本文提出了准临界传导模式下三相半控制增压整流器的分析和仿真。这种传导模式可确保输入电流将遵循正弦形式,抑制使用传感器或电流控制网格,为转换器提供更大的鲁棒性。另外,准关键模式保持了不连续操作模式的一些优点,例如,在开关的开启期间的零电流切换,控制系统的简单性和更低的成本。在这种配置中,半导体中的电流应力被划分,​​并且为切换传输需要单个脉冲。结果提出了通过低频降低的谐波电流含量降低的功率因数校正。

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