DC Power Supply System for Autonomous Objects

A. Kharitonov, R. Sarakhanova, O. Bodin, Y. Zolotukhin, S. Kharitonov
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Abstract

The article presents a DC power supply system based on a contactless synchronous generator with combined excitation and an uncontrolled rectifier. One of the possible options for constructing a DC power supply system for autonomous objects is described. In particular, such a power supply system can be used as an on-board power supply system for aircraft. A synchronous generator with combined excitation replaces three-stage synchronous generators, as an electric generator on board aircraft. The working magnetic flux in such a generator is created from two sources of magnetomotive force - a permanent magnet and an excitation winding. The main, as a rule, most of the working magnetic flux is created by permanent magnets, the excitation winding creates an additional, as a rule, smaller part of the flux than provides a change in the total flux and regulation in a certain range of the output voltage of the generator. Scenarios for selecting parameters and controlling a synchronous generator that ensure the stability and controllability of the system are proposed and investigated. The results obtained can be useful in the development of power supply systems for aircraft and autonomous objects.
自主对象直流供电系统
本文介绍了一种基于非接触同步发电机和无控整流器组合励磁的直流供电系统。描述了为自主对象构建直流电源系统的一种可能选择。特别地,这种供电系统可以作为飞机的机载供电系统。用联合励磁同步发电机代替三级同步发电机,如飞机上的发电机。这种发电机的工作磁通量是由两个磁动势源产生的——永磁体和励磁绕组。主要的,作为一个规则,大部分的工作磁通是由永磁体产生的,励磁绕组产生一个额外的,作为一个规则,比提供一个总磁通的变化较小的部分,并在一定范围内调节发电机的输出电压。提出并研究了保证系统稳定性和可控性的同步发电机参数选择和控制方案。所得结果可用于飞机和自主物体供电系统的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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