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A mathematical model for a polarisation based orientation measurement principle in time of arrival radio localisation systems

机译:到达时间无线电定位系统中基于极化的方向测量原理的数学模型

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The determination of orientation within time of arrival radio localisation systems is a widely discussed matter within the scientific world. In most cases, this goal is reached by using additional navigation sensors. Some other techniques exist, which are utilising only carrier phase measurements. For that purpose, the antenna configuration has to be chosen adequately. In the case considered here, a freely rotating and moving transmitter is equipped with a linearly polarised antenna. Two opposed circularly polarised antennas are used at the receiver. A general mathematical model for this basic measurement system is presented here. The electromagnetic field theory is deployed for the complete transmission chain up to the point where carrier phase measurements are obtained. As input to the model serve position and orientation of each of the transmitter and receiver antennas. The theory is verified by measurements with a rotating transmitter. The comparison of measured and calculated carrier phase values delivers a good match of theory and praxis.
机译:在到达时间的无线电定位系统中确定方向是科学界广泛讨论的问题。在大多数情况下,可以通过使用其他导航传感器来实现此目标。存在一些其他技术,这些技术仅利用载波相位测量。为了这个目的,该天线结构具有得到充分的选择。在这里考虑的情况下,自由旋转和移动的发射机配备了线性极化天线。接收器使用两个相对的圆极化天线。这里介绍了此基本测量系统的通用数学模型。将电磁场理论用于完整的传输链,直到获得载波相位测量为止。作为模型输入,每个发射机和接收机天线的位置和方向。通过使用旋转变送器进行测量可以验证该理论。测量和计算出的载波相位值的比较提供了理论和实践的良好匹配。

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