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Thermal influence on the receiver chain of GPS carrier phase equipment for time and frequency transfer

机译:时间和频率传输对GPS载波相位设备的接收链的热影响

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In this study a temperature controlled environment is used in order to quantify the thermal influence on all major parts of state of the art geodetic GPS receiving equipment. Temperature variations, effective as time delay variations, were identified as a dominating error source that degrades the capabilities of carrier phase GPS based time and frequency transfer considerably. For purely code-based measurements with uncertainties in the ns range is temperature rarely an issue. In contrast carrier phase observations offer potentially a two orders of magnitude better accuracy and are therefore suitable for exploiting the characteristics of maser quality clocks. However, the stability of the environment around the receiver equipment defines the achievable accuracy. Four distinct parts of the receiver chain were subject to systematic measurements of the temperature-delay dependency: antenna preamplifier, antenna and clock cables, power distribution devices and geodetic receivers. A temperature controllable climate chamber was deployed with the respective component to follow a long time-constant temperature stepping. Signal through devices were mainly tested in a vector-voltmeter approach. Zero base line GPS processing was used to test receivers. With individual component temperature dependence being far above the expected accuracy of carrier phase based time and frequency transfer it underlines the necessity to include temperature as an important parameter into time/frequency solutions.
机译:在该研究中,使用温度控制的环境,以量化对艺术地理位置GPS接收设备的所有主要部分的热影响。温度变化有效地延迟变化,被识别为主导误差源,其显着降低了基于载波相位GPS的时间和频率传输的能力。对于NS范围内的基于代码的测量,是温度很少是一个问题。在对比载波相位观察中,潜在的价格提供了两个更好的精度,因此适用于利用蒙皮优质时钟的特性。然而,接收器设备周围环境的稳定性定义了可实现的准确性。接收链的四个不同部分受到温度延迟依赖性的系统测量:天线前置放大器,天线和时钟电缆,配电装置和大地电缆接收器。用相应的组分展开温度可控的气候室以遵循长时间恒温踩踏。通过设备的信号主要在向量 - 电压表方法中进行测试。零基线GPS处理用于测试接收器。对于各个组件温度依赖性远高于载波相位的时间和频率传输的预期精度,它强调了将温度作为时间/频率解决方案的重要参数的必要性。

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