{"title":"Investigation of High-Frequency Power Conversion and Generator Techniques","authors":"J. Pierro, J. Phillips","doi":"10.1109/TA.1965.4319830","DOIUrl":null,"url":null,"abstract":"This paper reports on an investigation of techniques concerned with development of efficient and lightweight power conversion units for use with space power systems currently being developed. Results of the investigation provide an insight into the best system approach for supplying high frequency power. The effort was accomplished as part of Contract AF33(657)-11049 for the Research and Technology Division of Air Force Systems Command with Captain Harold L. Briggs as the Project Officer. Specifically, the conversion units analyzed are for supplying high-frequency (50 to 800KC), high-voltage power to accelerate plasma in an electric propulsion engine. Various conversion and power generation techniques are reviewed. Conceptual designs are established for conversion of 60 KW and 300 KW of power from a basic nuclear turbine system. A high frequency alternator is compared with a low frequency alternator using a frequency converter. A number of high frequency alternators are compared. Also, three frequency converter approaches are evaluated and compared; namely, a motor-generator unit, a transistor unit and a vacuum tube unit. The alternate system approaches are compared. Significant design data was derived for a high-speed, solid-rotor type of generator for generating a c power with frequencies up to 200 KC. Parametric data is included to show component sizes, weights and losses for converter units and high-frequency generator concepts. Problem areas for each conversion and generation technique are outlined.","PeriodicalId":13050,"journal":{"name":"IEEE Transactions on Aerospace","volume":"21 1","pages":"411-422"},"PeriodicalIF":0.0000,"publicationDate":"1965-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"IEEE Transactions on Aerospace","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/TA.1965.4319830","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
This paper reports on an investigation of techniques concerned with development of efficient and lightweight power conversion units for use with space power systems currently being developed. Results of the investigation provide an insight into the best system approach for supplying high frequency power. The effort was accomplished as part of Contract AF33(657)-11049 for the Research and Technology Division of Air Force Systems Command with Captain Harold L. Briggs as the Project Officer. Specifically, the conversion units analyzed are for supplying high-frequency (50 to 800KC), high-voltage power to accelerate plasma in an electric propulsion engine. Various conversion and power generation techniques are reviewed. Conceptual designs are established for conversion of 60 KW and 300 KW of power from a basic nuclear turbine system. A high frequency alternator is compared with a low frequency alternator using a frequency converter. A number of high frequency alternators are compared. Also, three frequency converter approaches are evaluated and compared; namely, a motor-generator unit, a transistor unit and a vacuum tube unit. The alternate system approaches are compared. Significant design data was derived for a high-speed, solid-rotor type of generator for generating a c power with frequencies up to 200 KC. Parametric data is included to show component sizes, weights and losses for converter units and high-frequency generator concepts. Problem areas for each conversion and generation technique are outlined.
本文报告了一项有关开发用于目前正在开发的空间动力系统的高效和轻便的功率转换单元的技术的调查。研究结果为提供高频电源的最佳系统方法提供了见解。这项工作是空军系统司令部研究与技术部AF33(657)-11049合同的一部分,由Harold L. Briggs上尉担任项目官员。具体来说,所分析的转换单元用于提供高频(50至800KC)高压功率,以加速电力推进发动机中的等离子体。介绍了各种转换和发电技术。从一个基本的核涡轮系统转换60千瓦和300千瓦的功率,建立了概念设计。使用变频器将高频交流发电机与低频交流发电机进行比较。对几种高频交流发电机进行了比较。同时,对三种变频方法进行了评价和比较;即,一个电机发电机单元,一个晶体管单元和一个真空管单元。对不同的系统方法进行了比较。为产生频率高达200kc的c功率的高速、固体转子型发电机导出了重要的设计数据。参数数据包括转换器单元和高频发电机概念的组件尺寸、重量和损耗。概述了每种转换和生成技术的问题区域。