首页> 外文期刊>Antennas and Propagation Magazine, IEEE >Analysis of Reflector Vibration-Induced Pointing Errors for Large Antennas Subject to Wind Disturbance: Evaluating the pointing error caused by reflector deformation.
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Analysis of Reflector Vibration-Induced Pointing Errors for Large Antennas Subject to Wind Disturbance: Evaluating the pointing error caused by reflector deformation.

机译:受风扰的大型天线反射器振动引起的指向误差分析:评估反射器变形引起的指向误差。

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摘要

Large reflector antennas have been widely used in satellite communications, deep-space exploration, and so on. The pointing accuracy in these applications is required to be quite high as the beams involved are narrow. The pointing accuracy, however, may be influenced by wind disturbance, especially in those with a low natural frequency and constructed without a radome. Furthermore, it is difficult to compensate for such errors without predicting the pointing error (PE) that occurs as a result of reflector deformation caused by wind disturbance. This article analyzes the impact on pointing accuracy of the flexible oscillation of the reflective surface resulting from a stochastic wind disturbance. First, structural deformations are derived from the dynamic equations based on modal analysis. The PEs due to the structural deformations are then analyzed and an analytical model for predicting antenna PE is derived. Finally, a series of simulations based on a 7.3-m Ka-band antenna is undertaken. It verifies the finite-element model used with the help of a modal analysis experiment. The results show that the maximum PE caused by the flexible oscillation of the reflective surface subjected to a wind with a speed of 10 m/s is 0.00527?. In comparison, the maximum PE that can be measured by a shaft encoder is just 0.00768?. In addition, for larger antennas, e.g., 110 m, the total PE (TPE) is revealed to depend mainly on reflector deformation caused by wind disturbance. Thus, it is important to dampen flexible oscillations of large antennas subject to wind disturbances to improve their pointing accuracy.
机译:大型反射器天线已广泛用于卫星通信,深空探测等。由于涉及的光束很窄,因此在这些应用中的指向精度要求很高。但是,指向精度可能会受到风的干扰,特别是在固有频率较低且没有天线罩的情况下。此外,在不预测由于风扰引起的反射器变形而发生的指向误差(PE)的情况下,难以补偿这种误差。本文分析了随机风扰对反射面柔性振动对指向精度的影响。首先,基于模态分析从动力学方程推导结构变形。然后分析由于结构变形而引起的PE,并推导出用于预测天线PE的分析模型。最后,基于7.3 m Ka波段天线进行了一系列仿真。它借助模态分析实验来验证所使用的有限元模型。结果表明,在风速为10 m / s的情况下,由反射面的柔性振动引起的最大PE为0.00527Ω。相比之下,轴编码器可测得的最大PE仅为0.00768?。此外,对于较大的天线(例如110 m),总的PE(TPE)显示主要取决于由风扰引起的反射器变形。因此,重要的是抑制大型天线受到风扰的柔性振荡,以提高其指向精度。

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