2011•Unpublished venueRequires access

A design and implementation of edge controller for SPWM waves

Fan Lin, Kun Li, Yang Liu

Open publisher page 3 citations

Abstract

SPWM (Sinusoidal Pulse Width Modulation) waves are commonly used in the control of frequency conversion and test system. This paper presents a method which can control SPWM waves rising/falling time for the requirements of controlled edge. This function mainly for a high power device test systems. First, SPWM waves are generated by a generator programmed by LabVIEW, and the SPWM waves' dead time and frequency of carrier signals and modulation signals can be easily regulated by LabVIEW. Second, SPWM waves rising / falling time is adjusted by edge controller. The experimental results indicate that SPWM waves edge time adjusts from 0.1μs to 12μs can be achieved using this design.

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What this paper is about

SPWM (Sinusoidal Pulse Width Modulation) waves are commonly used in the control of frequency conversion and test system. This paper presents a method which can control SPWM waves rising/falling time for the requirements of controlled edge. This function mainly for a high power device test systems. First, SPWM waves are generated by a generator programmed by LabVIEW, and the SPWM waves' dead time and frequency of carrier signals and modulation signals can be easily regulated by LabVIEW. Second, SPWM waves rising / falling time is adjusted by edge controller. The experimental results indicate that SPWM waves edge time adjusts from 0.1μs to 12μs can be achieved using this design.

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Available abstract

SPWM (Sinusoidal Pulse Width Modulation) waves are commonly used in the control of frequency conversion and test system. This paper presents a method which can control SPWM waves rising/falling time for the requirements of controlled edge. This function mainly for a high power device test systems. First, SPWM waves are generated by a generator programmed by LabVIEW, and the SPWM waves' dead time and frequency of carrier signals and modulation signals can be easily regulated by LabVIEW. Second, SPWM waves rising / falling time is adjusted by edge controller. The experimental results indicate that SPWM waves edge time adjusts from 0.1μs to 12μs can be achieved using this design.

Key concepts: Pulse-width modulation, Signal edge, Enhanced Data Rates for GSM Evolution, Controller (irrigation), Power (physics), Modulation (music), Leading edge, Generator (circuit theory)

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