首页> 外文期刊>Selected Topics in Signal Processing, IEEE Journal of >Carrier Recovery Enhancement for Maximum-Likelihood Doppler Shift Estimation in Mars Exploration Missions
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Carrier Recovery Enhancement for Maximum-Likelihood Doppler Shift Estimation in Mars Exploration Missions

机译:火星探索任务中最大似然多普勒频移估计的载波恢复增强

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ara> One of the most crucial stages of the Mars Exploration Missions is the Entry, Descent, and Landing (EDL) phase. During EDL, maintaining reliable communication from the spacecraft to Earth is extremely important for the success of future missions, especially in case of mission failure. EDL is characterized by very deep accelerations, caused by friction, parachute deployment and rocket firing among others. These dynamics cause a severe Doppler shift on the carrier communications link to Earth. Methods have been proposed to estimate the Doppler shift based on Maximum Likelihood. So far these methods have proved successful, but it is expected that the next Mars mission, known as the Mars Science Laboratory, will suffer from higher dynamics and lower SNR. Thus, improving the existing estimation methods becomes a necessity. We propose a Maximum Likelihood approach that takes into account the power in the data tones to enhance carrier recovery, and improve the estimation performance by up to 3 dB. Simulations are performed using real data obtained during the EDL stage of the Mars Exploration Rover B (MERB) mission.
机译:ara>火星探索任务最关键的阶段之一是进入,下降和着陆(EDL)阶段。在EDL期间,保持航天器与地球之间的可靠通信对于未来任务的成功至关重要,尤其是在任务失败的情况下。 EDL的特征是非常深的加速度,它是由摩擦,降落伞部署和火箭发射等引起的。这些动力学特性会导致与地球之间的载波通信链路发生严重的多普勒频移。已经提出了基于最大似然估计多普勒频移的方法。到目前为止,这些方法已被证明是成功的,但是可以预期,下一个火星任务,即火星科学实验室,将遭受更高的动力学和更低的SNR。因此,改进现有的估计方法成为必要。我们提出了一种最大似然方法,该方法考虑了数据音调中的功率以增强载波恢复,并将估计性能提高多达3 dB。使用在火星探测漫游者B(MERB)任务的EDL阶段获得的真实数据执行模拟。

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