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Current ripple reduction of aircraft start generators in the starting mode with variable switching frequency method | IEEE Conference Publication | IEEE Xplore

Current ripple reduction of aircraft start generators in the starting mode with variable switching frequency method


Abstract:

This paper proposes a method of variable switching frequency pulse-width-modulation (PWM) to suppress current ripple when aircraft start generator (SG) operates in the st...Show More

Abstract:

This paper proposes a method of variable switching frequency pulse-width-modulation (PWM) to suppress current ripple when aircraft start generator (SG) operates in the starting mode. Compared with the widely used constant switching frequency PWM, the method can work evidently, especially in the range of low speed. Based on analysis of dead-time effects in the two-level voltage source inverter, relationship between the three-phase voltage error and dead time is acquired. Through adjusting switching frequency of switching devices with the SG speed, the dead-time effects can be weakened in order to reduce voltage distortion and current ripple. The proposed method is applied to a 75kVA SG drive system and implemented in a digital signal processor (DSP). Simulation and experimental results demonstrate the effectiveness of the proposed method.
Date of Conference: 29 October 2017 - 01 November 2017
Date Added to IEEE Xplore: 18 December 2017
ISBN Information:
Conference Location: Beijing, China
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I. Introduction

With the rapid development of more electric aircrafts, integrated start generator (SG) has become an important developing direction in the field of modern aviation. Traditionally the aero engine is driven by a separated starter and generator system removes the special starter. Two sets of machines are involved in the AC power system in aircraft, which increases weight, volume and complexity of the system. Therefore, research on the integrated start generator system in aviation is of great significance.

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