The implementation method is to spread the technology of dynamic time beam distribution on the geostationary satellite communication network. For example, the ground processing node of the geostationary satellite network can monitor the position of the beam coverage area and find a beam drift originator representing the current drift of one or more coverage areas. The ground terminal can be identified as a point bundle service related to the fluid coverage area or area, and has an impact on the quality of signal C.Consequences of Omo drifting. The ground terminal node may calculate an update of a beam distribution graph that reallocates the user terminal determined from the currently in use point beam to another point beam in order to process at least part of the impact on the determined signal quality. It's about rafting. Some ways of implementationIn addition, load balancing and / or other factors, and / or the possibility of maintaining state communication between the redeployed user terminal and the geostationary satellite.
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