首页> 外文会议>58th International Astronautical Congress 2007 >IN-ORBIT DEPLOYMENT CHARACTERISTICS OF LARGE DEPLOYABLE ANTENNA REFLECTOR ONBOARD ENGINEERING TEST SATELLITE VIII
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IN-ORBIT DEPLOYMENT CHARACTERISTICS OF LARGE DEPLOYABLE ANTENNA REFLECTOR ONBOARD ENGINEERING TEST SATELLITE VIII

机译:大型可部署天线反射器车载工程测试卫星VIII的在轨部署特性

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This paper describes design, ground testing, an in-orbit experiment, and a novel in-orbit operation for large deployable antenna reflectors (LDRs). Two LDRs (TX-LDR for transmitting and RX-LDR for receiving) are installed on Engineering Test Satellite VIII (ETS-VIII). The reflector design features that the antenna reflector whose aperture is 13 m in diameter (the mechanical dimension is 19m x 17 m) consists of fourteen basic modules, and each basic module consists of a gold-plated molybdenum mesh, a system of cables, and a deployable frame structures. Several ground tests had been performed using a modular nature to advantage. Prior to the launch of ETS-VIII, we performed an in-orbit deployment experiment using LDREX-2 which consists of seven half-scale modules of LDR, to confirm evaluation accuracy. The LDREX-2 was launched by ARIANE 5 launch vehicle as a piggy-back payload. Deployment characteristics were measured to evaluate the accuracy of analytical prediction obtained by ground deployment testing. ETS-VIII was launched by H-IIA launch vehicle on 18 December 2006. After the successful injection into Geo Synchronous Orbit, the RX-LDR and the TX-LDR were successfully deployed on December 25th and 26th , respectively. We confirmed adequacy of the proposed design and ground verification methodology.
机译:本文介绍了大型可部署天线反射器(LDR)的设计,地面测试,在轨实验和新颖的在轨操作。在工程测试卫星VIII(ETS-VIII)上安装了两个LDR(用于发送的TX-LDR和用于接收的RX-LDR)。反射器的设计特征是直径为13 m(机械尺寸为19m x 17 m)的孔径的天线反射器由14个基本模块组成,每个基本模块均由镀金的钼网,电缆系统和可部署的框架结构。利用模块化的性质已经进行了几次地面测试,以取得优势。在发射ETS-VIII之前,我们使用LDREX-2进行了在轨部署实验,该实验由七个LDR半比例模块组成,以确认评估的准确性。 LDREX-2由ARIANE 5运载火箭作为背负式有效载荷运载。测量了部署特性,以评估通过地面部署测试获得的分析预测的准确性。 ETS-VIII由H-IIA运载火箭于2006年12月18日发射。成功注入地球同步轨道后,RX-LDR和TX-LDR分别于12月25日和26日成功部署。我们确认了拟议的设计和地面验证方法的适当性。

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