International audienceReal-time orbit determination and interplanetary navigation require accurate predictions of the orientation of the Earth in the celestial reference frame and in particular that for Universal Time UT1. Much of the UT1 variations over periods ranging from hours to a couple of years are due to the global atmospheric circulation. Therefore, the axial atmospheric angular momentum (AAM) forecast series may be used as a proxy index to predict UT1. Our approach taking advantage of this fact is based on an adaptive procedure. It involves incorporating integrations of AAM estimates into UT1 series. The procedure runs on a routine basis using AAM forecasts that are based on the two meteorological series, from the US National Cent...
Angular momentum of the Earth system is calculated for the past 139 years (1880-2018) including cont...
Monthly mean predictions of atmospheric angular momentum for each year from 1960. All predictions s...
International audienceShort period variations in the Earth's rotation rate, length‐of‐day (LOD), are...
International audienceReal-time orbit determination and interplanetary navigation require accurate p...
International audienceReal-time orbit determination and interplanetary navigation require accurate p...
International audienceReal-time orbit determination and interplanetary navigation require accurate p...
Abstract Advanced geodetic and astronomical tasks, such as precise positioning and navigation requir...
International audiencePrecise transformations between the international celestial and terrestrial re...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
International audiencePrecise transformations between the international celestial and terrestrial re...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
The tendency of the atmospheric angular momentum (AAM) is investigated using a 49-year set of month...
Axial and equatorial atmospheric angular momentum (AAM) functions for the rotational dynamics of the...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
Angular momentum of the Earth system is calculated for the past 139 years (1880-2018) including cont...
Monthly mean predictions of atmospheric angular momentum for each year from 1960. All predictions s...
International audienceShort period variations in the Earth's rotation rate, length‐of‐day (LOD), are...
International audienceReal-time orbit determination and interplanetary navigation require accurate p...
International audienceReal-time orbit determination and interplanetary navigation require accurate p...
International audienceReal-time orbit determination and interplanetary navigation require accurate p...
Abstract Advanced geodetic and astronomical tasks, such as precise positioning and navigation requir...
International audiencePrecise transformations between the international celestial and terrestrial re...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
International audiencePrecise transformations between the international celestial and terrestrial re...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
The tendency of the atmospheric angular momentum (AAM) is investigated using a 49-year set of month...
Axial and equatorial atmospheric angular momentum (AAM) functions for the rotational dynamics of the...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
Angular momentum of the Earth system is calculated for the past 139 years (1880-2018) including cont...
Monthly mean predictions of atmospheric angular momentum for each year from 1960. All predictions s...
International audienceShort period variations in the Earth's rotation rate, length‐of‐day (LOD), are...