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ST8 Validation Experiment:Ultraflex-175 Solar Array Technology Advance: Deployment Kinematics and Deployed Dynamics Ground Testing and Model Validation

机译:ST8验证实验:UltraFlex-175太阳能阵列技术推进:部署运动学和部署动力学地面测试和模型验证

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The UltraFlex-175 solar array technology was chosen by NASA's New Millennium ST8 Program to be systematically advanced from a laboratory environment to system model or prototype demonstrated in a relevant (or simulated, ground) environment. This new solar array provides breakthrough performance beyond the current state-of-the-art rigid panel composite solar arrays due to its unique radial, tensioned membrane architecture and compact stowage volume. UltraFlex's benefits include power-to-weight improvement, increased deployed frequency, and reduced deployed mass moment-of-inertia. A novel test method was used wherein the base was fixed and a displacement controlled sinusoidal-sweep excitation is minimally applied at a point on the array structure. At a natural frequency of the array, minimal force is required to keep the array vibrating at the controlled displacement input and also results in a low displacement response over the entire array. This method enabled quick, multiple, and repeatable tests because the minimal response avoids risk of damaging the hardware. This dynamics testing, along with deployment kinematics testing, was performed in both ambient pressure and vacuum conditions. Crucial to the accurate measurement of the test hardware kinematics and deployed dynamics was the development of off-loaders that minimize any influence on the system. The comprehensive ST8 ground test regimen performed on the high-fidelity 5.5-meter prototype UltraFlex solar array advanced this solar array technology making it ready for infusion into a wide range of manned and unmanned space missions.
机译:Ultraflex-175 Solar Array技术由NASA的新千年ST8程序选择,以系统地从实验室环境中提升到系统模型或在相关(或模拟,地面)环境中显示的原型。这种新的太阳能阵列由于其独特的径向,张紧膜架构和紧凑的存放量,提供超出当前最先进的刚性板复合太阳阵列的突破性。 Ultraflex的优势包括电源到权重改善,增加部署频率,并且减少了部署的质量惯例。使用一种新型测试方法,其中碱被固定,并且位移控制的正弦扫描激发在阵列结构的点处最小施加。在阵列的固有频率下,需要最小的力来保持在受控位移输入处振动的阵列,并且还导致整个阵列的低位移响应。此方法启用快速,多个和可重复的测试,因为最小的响应避免了损坏硬件的风险。这种动态测试以及部署运动学测试在环境压力和真空条件下进行。对于测试硬件运动学和部署动态的准确测量至关重要是开发空载器,最大限度地减少对系统的任何影响。全面的ST8地面测试方案在高保真5.5米原型Ultraflex Solar Array上进行了高级这款太阳能阵列技术,使其准备注入广泛的载人和无人驾驶空间任务。

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