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Space Debris Observation Potential with EISCAT 3D

机译:使用EISCAT 3D观察空间碎片的潜力

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We investigate the capabilities of the next generation ionospheric research radar EISCAT 3D (E3D) for space debris observations. We have used the current projected design of E3D as basis of this study. To model the performance of E3D for space debris observations, we have included basic radar equation based error analysis for range and range-rate observations. Because the radar will be multi-static, it is also capable of observing instantaneous three-dimensional vector velocities and positions by observing round-trip range and range-rate between the transmitter and three receiver sites. We have included error estimates for both of the the three-dimensional position and three-dimensional vector velocity observations. To estimate the fraction of total debris that can be observed with E3D, we have used the MASTER model. We have also investigated effects of radio wave propagation. E3D uses a relatively low VHF frequency (233 MHz), which experiences more radio wave propagation effects than more conventional higher frequency space surveillance radars. Our modeling shows that ionospheric ray-bending and group delay are severe enough that these effects need to be modeled in order to determine accurate orbital elements. As EISCAT 3D is an ionospheric research radar, there will be high quality ionospheric electron density measurements that can be utilized for radio propagation modeling.
机译:我们研究下一代电离层研究雷达EISCAT 3D(E3D)进行空间碎片观测的能力。我们已将E3D的当前预计设计用作本研究的基础。为了模拟E3D在空间碎片观测中的性能,我们包括了基于雷达方程的基本误差分析,用于距离和距离速率观测。因为雷达将是多静态的,所以它还能够通过观察发射器和三个接收器站点之间的往返距离和测距率来观察瞬时三维矢量速度和位置。我们已经包括了对三维位置和三维矢量速度观测值的误差估计。为了估算E3D可以观察到的总碎片比例,我们使用了MASTER模型。我们还研究了无线电波传播的影响。 E3D使用相对较低的VHF频率(233 MHz),它比更常规的高频空间监视雷达受到更多的无线电波传播影响。我们的模型表明,电离层射线弯曲和群延迟足够严重,以至于需要对这些效应进行建模才能确定准确的轨道元素。由于EISCAT 3D是电离层研究雷达,因此将有高质量的电离层电子密度测量可用于无线电传播建模。

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