{"title":"电磁悬浮与跟踪系统作为电力行业质量管理机制的应用:电气部分","authors":"V. Shutov, M. Nazarenko","doi":"10.1109/ICIEAM54945.2022.9787206","DOIUrl":null,"url":null,"abstract":"This article discusses the use of electromagnetic levitation with a tracking system as a quality management mechanism in the electric power industry, and other related methods of magnetic levitation. The analysis of existing magnetic levitation devices, both analog devices and digital control, was also carried out. The existing electronic circuit of a levitron based on the interaction of 6 electromagnets with each other was considered, the pros and cons of this circuit were described. The novelty of the article lies in the proposed modified electrical circuit with the replacement of radio components, as well as in the creation of electromagnets with proper quality control. In the schematic diagram, field-effect transistors, operational amplifiers were replaced, and 2 variable resistors were added, connected to the inverting input of the operational amplifier to control the location of the levitating magnet, and a 200uf field capacitor for more stable operation of the circuit. 2 inductors, an operational amplifier and a number of related electronic components have also been removed. The solenoids were developed taking into account the national standard GOST R IEC 1007–96 “Transformers and inductors used in electronic equipment and long-distance communication equipment” in accordance with paragraphs 4.2 “External inspection”, 4.2.1”Position of the protective screen”. The main characteristics and photos of the developed solenoids are also presented.","PeriodicalId":128083,"journal":{"name":"2022 International Conference on Industrial Engineering, Applications and Manufacturing (ICIEAM)","volume":"38 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2022-05-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"The Use of Electromagnetic Levitation with a Tracking System as a Quality Management Mechanism in the Electric Power Industry: Electrical Part\",\"authors\":\"V. Shutov, M. Nazarenko\",\"doi\":\"10.1109/ICIEAM54945.2022.9787206\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"This article discusses the use of electromagnetic levitation with a tracking system as a quality management mechanism in the electric power industry, and other related methods of magnetic levitation. The analysis of existing magnetic levitation devices, both analog devices and digital control, was also carried out. The existing electronic circuit of a levitron based on the interaction of 6 electromagnets with each other was considered, the pros and cons of this circuit were described. The novelty of the article lies in the proposed modified electrical circuit with the replacement of radio components, as well as in the creation of electromagnets with proper quality control. In the schematic diagram, field-effect transistors, operational amplifiers were replaced, and 2 variable resistors were added, connected to the inverting input of the operational amplifier to control the location of the levitating magnet, and a 200uf field capacitor for more stable operation of the circuit. 2 inductors, an operational amplifier and a number of related electronic components have also been removed. 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引用次数: 0
摘要
本文讨论了在电力行业中使用带有跟踪系统的电磁悬浮作为质量管理机制,以及其他相关的磁悬浮方法。对现有的模拟装置和数字控制的磁悬浮装置进行了分析。考虑了现有的基于6个电磁铁相互作用的levitron电子电路,并对该电路的优缺点进行了描述。文章的新颖之处在于拟议的修改电路与更换无线电元件,以及在创造电磁铁与适当的质量控制。在原理图中,替换了场效应晶体管、运算放大器,并增加了2个可变电阻,连接到运算放大器的反相输入端,控制悬浮磁体的位置,并增加了一个200uf的场电容,使电路运行更加稳定。2个电感器、一个运算放大器和一些相关的电子元件也被移除。螺线管是根据国家标准GOST R IEC 1007-96“用于电子设备和远程通信设备的变压器和电感器”根据第4.2条“外部检查”,4.2.1“保护屏的位置”开发的。介绍了所研制的螺线管的主要特点和照片。
The Use of Electromagnetic Levitation with a Tracking System as a Quality Management Mechanism in the Electric Power Industry: Electrical Part
This article discusses the use of electromagnetic levitation with a tracking system as a quality management mechanism in the electric power industry, and other related methods of magnetic levitation. The analysis of existing magnetic levitation devices, both analog devices and digital control, was also carried out. The existing electronic circuit of a levitron based on the interaction of 6 electromagnets with each other was considered, the pros and cons of this circuit were described. The novelty of the article lies in the proposed modified electrical circuit with the replacement of radio components, as well as in the creation of electromagnets with proper quality control. In the schematic diagram, field-effect transistors, operational amplifiers were replaced, and 2 variable resistors were added, connected to the inverting input of the operational amplifier to control the location of the levitating magnet, and a 200uf field capacitor for more stable operation of the circuit. 2 inductors, an operational amplifier and a number of related electronic components have also been removed. The solenoids were developed taking into account the national standard GOST R IEC 1007–96 “Transformers and inductors used in electronic equipment and long-distance communication equipment” in accordance with paragraphs 4.2 “External inspection”, 4.2.1”Position of the protective screen”. The main characteristics and photos of the developed solenoids are also presented.