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Co-axial joint technology applied to antenna backup structures

机译:同轴接头技术应用于天线后备结构

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The increasing demand to improve focusing accuracy and to accommodate higher frequencies in space communications and radio astronomy has created significant challenges for improving the capability of the constituent systems in radio antennas and telescopes. One important system is the radio antenna/telescope backup structure connections. The backup structure is a key element in providing a stable, precise and rigid support for the reflective surface. The ideal connection for these types of structures is rigid and concentric resulting in minimal deformation with stress/strain curves that are linear, repeatable and exhibiting no hysteresis over the entire service load range. Conceivably such a connection could be designed so that the stress/strain curve mimics the stress/strain characteristics of the connecting member in both tension and compression. When this is achieved then such joints can be said to be "invisible" in the global behavior of the backup structure. At that point, overall reflector deflection becomes more linear and highly predictable. In conjunction with this advantage, optimized backup structure geometries, adaptive reflectors and compensating algorithms can best be applied in producing an instrument of unparalleled performance. This paper introduces Co-Axial Joint (CAJ) technology as the practical and economical means to produce an invisible connection.
机译:在空间通信和射电天文学中提高聚焦精度并适应更高频率的需求不断增加,这对提高无线电天线和望远镜组成系统的能力提出了重大挑战。一个重要的系统是无线电天线/望远镜备用结构连接。支撑结构是为反射表面提供稳定,精确和刚性支撑的关键要素。这些类型的结构的理想连接是刚性且同心的,以最小的变形和线性的,可重复的应力/应变曲线,在整个使用载荷范围内都没有滞后现象。可以想到的是,可以这样设计连接,使得应力/应变曲线模仿在拉伸和压缩时连接构件的应力/应变特性。当实现这一点时,可以说这种接头在备用结构的整体行为中是“不可见的”。到那时,反射镜的整体偏转将变得更加线性且高度可预测。结合这一优势,优化的后备结构几何形状,自适应反射器和补偿算法可以最好地应用于生产无与伦比的性能的仪器。本文介绍同轴共轴(CAJ)技术,作为产生隐形连接的实用且经济的方法。

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