Electrotechnical complex of maglev rolling stock

A. Kireev, N. Kozhemyaka, G. Kononov
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引用次数: 1

Abstract

Background: The development of work in the field of creating cargo maglev transport systems is associated with the development and study of the electro technical complex of the rolling stock for the operating range with long stretches in poorly developed territories. Aim: The aim of the work is to substantiate the structure and parameters of the components of the electro technical complex of the rolling stock, to study the operating modes. Methods: The main research methods are functional structural analysis and synthesis, computer modeling, computational studies, analysis of research results. Results: As a result of the research, the factors that determine the appearance of the electrotechnical complex of the rolling stock have been identified. The basic requirements for the electrical complex are formulated. The structure was developed and the parameters of the components of the electrical complex for the transport platform with magnetic levitation were determined. A high-speed flat car model 13-6990 for the transportation of containers was chosen as the closest railway analogue. A computer model of a combined traction-levitation system based on a linear reluctance inductor motor has been developed. The results of computational studies, confirming the physical feasibility of the electrical complex of the rolling stock with linear reluctance inductor motors, are presented. Conclusion: The practical significance lies in the fact that the proposed concept of constructing an electro technical complex of rolling stock provides for the creation of a maglev transport system with a low-cost infrastructure.
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磁浮车辆电气综合设备
背景:建立货物磁悬浮运输系统领域的工作发展与欠发达地区长距离运营范围的铁路车辆电气技术综合体的开发和研究有关。目的:确定机车车辆电气复合体各部件的结构和参数,研究其运行方式。方法:主要研究方法有功能结构分析与综合、计算机建模、计算研究、研究结果分析等。结果:通过研究,确定了决定机车车辆电气复合体外观的因素。制定了电气综合体的基本要求。研制了磁悬浮运输平台电复合物的结构,确定了电复合物各部件的参数。选择13-6990型集装箱高速平板车作为最接近的铁路模拟。建立了基于线性磁阻感应电机的联合牵引-悬浮系统的计算机模型。给出了计算研究的结果,证实了采用线性磁阻电感电机的机车车辆电气复合体的物理可行性。结论:本文的实际意义在于,所提出的建设机车车辆电气技术综合体的概念为建立一个低成本基础设施的磁悬浮运输系统提供了条件。
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