Segment synchronous shepwm switching control method, medium and electronic equipment
A control method and PWM signal technology, applied in the field of converters, can solve problems such as the inability to completely eliminate narrow pulses, and achieve the effects of minimum pulse width control, elimination of specified order harmonics, and high switching accuracy.
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Embodiment 1
[0043] Such as image 3 As shown, the segmented synchronous SHEPWM switching control method provided by the present embodiment includes the following steps:
[0044] Step 1, determine the proportional relationship between the minimum pulse width and the PWM cycle time.
[0045] Minimum pulse width T min Determined according to the minimum turn-on, turn-off time and dead time of high-power switching devices. The minimum turn-on and turn-off time of high-power switching devices and the corresponding dead time vary with different manufacturers, different types of high-power switching devices and actual working switching frequency and other factors. The minimum pulse width should be based on the actual working conditions of high-power switching devices Make sure. The turn-on process and turn-off process of high-power switching devices such as IGCT take a long time. For example, the minimum pulse width of the 4500V / 4000A IGCT after considering the dead time can reach 150 microse...
Embodiment 2
[0062] This embodiment provides a converter modulation method, in which the segmented synchronous SHEPWM switching control method as described in Embodiment 1 is used to switch between SHEPWM modes with different carrier ratios.
Embodiment 3
[0064] This embodiment provides a diode-clamped three-level converter, which implements switching of SHEPWM modes with different carrier ratios based on the segmented synchronous SHEPWM switching control method described in the embodiment.
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