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Experimental Data for Two Different Alternator Configurations in a Solar Brayton Power System

机译:太阳布雷顿电力系统中两种不同发电机配置的实验数据

摘要

A solar dynamic (SD) space power system has been under test at the NASA Lewis Research Center since 1994. The SD Ground Test Demonstration (GTD) system includes a solar concentrator, heat receiver with thermal energy storage, Brayton power conversion unit, and radiator installed in a thermal-vacuum chamber with a solar simulator. The Brayton unit has been operated with two different turboalternator compressor (TAC) assemblies, one which included a Rice Lundell alternator and another which incorporated a permanent magnet (PM) alternator. The Rice alternator was part of the mini-Brayton rotating unit, designed and built during the 1970's and refurbished for the GTD. The PM TAC was a development unit from the Joint US/Russian SD Flight Project. This paper highlights the operational differences (and similarities) between the Rice and PM TAC configurations including a comparative evaluation of startup characteristics and operating performance. The two alternator configurations were tested under similar thermal conditions, as an interchangeable component within the SD system. The electrical characteristics of the two units, however, dictated the use of significantly different power conditioning and control strategies. The electrical control architectures are described and compared. Test data are presented on TAC startup and system operating performance for both configurations.
机译:自1994年以来,就已经在NASA Lewis研究中心对一个太阳能动态(SD)空间电源系统进行了测试。SD地面测试演示(GTD)系统包括一个太阳能集中器,带有热能存储的热量接收器,布雷顿(Brayton)功率转换单元和散热器安装在带有太阳模拟器的热真空室内。 Brayton机组已使用两种不同的涡轮交流发电机压缩机(TAC)组件进行操作,其中一个组件包括莱斯伦德尔交流发电机,另一种组件包括永磁(PM)交流发电机。赖斯发电机是微型布雷顿旋转装置的一部分,该装置是在1970年代设计和制造的,并为GTD进行了翻新。 PM TAC是美国/俄罗斯SD飞行联合项目的一个开发部门。本文着重介绍了Rice和PM TAC配置之间的操作差异(和相似性),包括对启动特性和操作性能的比较评估。两种交流发电机配置在相似的热条件下进行了测试,作为SD系统中的可互换组件。但是,两个单元的电气特性决定了使用明显不同的功率调节和控制策略。描述并比较了电气控制架构。针对这两种配置,都提供了有关TAC启动和系统运行性能的测试数据。

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