Method and network node for obtaining nominal power and pathloss compensation factor of a power control process
A method and a network node (110) for obtaining a nominal power "P0" of transmissions on an uplink channel and a pathloss compensation factor "α" are disclosed. The cell (101) is associated to a non-regular scenario, at least partly defined by respective locations of further cell...
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creator | Fernández Segovia, José´ Ángel Luna Ramírez, Salvador Ubeda Castellanos, Carlos Toril Genovés, Matías Vallejo Mora, Ana Belen |
description | A method and a network node (110) for obtaining a nominal power "P0" of transmissions on an uplink channel and a pathloss compensation factor "α" are disclosed. The cell (101) is associated to a non-regular scenario, at least partly defined by respective locations of further cells of the cellular network (100). The further cells are neighbors to the cell (101), which is located at a location within the cellular network (100). The network node (110) generates, for each further cell, a respective regular scenario in relation to the cell (101). The generation is at least based the respective location corresponding to said each further cell and the location of the cell (101). The network node (110) determines, also for each further cell, a respective P0 and a respective α for each respective regular scenario. The network node (110) applies a statistical formula to each of the respective P0 and the respective α to obtain the nominal power and the path loss compensation factor to be applied by the user equipment (120) in the cell (101). |
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The cell (101) is associated to a non-regular scenario, at least partly defined by respective locations of further cells of the cellular network (100). The further cells are neighbors to the cell (101), which is located at a location within the cellular network (100). The network node (110) generates, for each further cell, a respective regular scenario in relation to the cell (101). The generation is at least based the respective location corresponding to said each further cell and the location of the cell (101). The network node (110) determines, also for each further cell, a respective P0 and a respective α for each respective regular scenario. 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subjects | ELECTRIC COMMUNICATION TECHNIQUE ELECTRICITY TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHICCOMMUNICATION WIRELESS COMMUNICATIONS NETWORKS |
title | Method and network node for obtaining nominal power and pathloss compensation factor of a power control process |
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