Feed-forward filtering device and associated method
US-10756933-B2 · Aug 25, 2020 · US
US2024223410A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2024223410-A1 |
| Application number | US-202117920923-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 24, 2021 |
| Priority date | Dec 24, 2021 |
| Publication date | Jul 4, 2024 |
| Grant date | — |
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An Open Radio Access Network Radio Unit (O-RU) including a Radio Frequency (RF) unit and a baseband unit, wherein: the baseband unit includes two or more digital signal processing units; the two or more digital signal processing units are configured to execute digital signal processing with respectively defined higher-level units; and the baseband unit is configured so as to be able to make some of the two or more digital signal processing units execute the digital signal processing and so as to be able to switch between the digital signal processing units that are made to execute the digital signal processing.
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1 . An Open Radio Access Network Radio Unit (O-RU) including a Radio Frequency (RF) unit, and a baseband unit, wherein: the baseband unit includes two or more digital signal processing units; the two or more digital signal processing units are configured to execute digital signal processing with respectively defined higher-level units; and the baseband unit is configured so as to be able to make some of the two or more digital signal processing units execute the digital signal processing and so as to be able to switch between the digital signal processing units that are made to execute the digital signal processing. 2 . The O-RU according to claim 1 , wherein the respective digital signal processing units are kept in a state of being communicably connected to the respectively defined higher-level units. 3 . The O-RU according to claim 1 , wherein the respective digital signal processing units are connected to the same RF unit. 4 . The O-RU according to claim 1 , wherein, even if the digital signal processing units that are made to execute the digital signal processing are switched, signals processed by the digital signal processing units are transmitted and received by the same antenna. 5 . The O-RU according to claim 1 , further including a generation unit that generates the two or more digital signal processing units in the baseband unit. 6 . The O-RU according to claim 1 , wherein the higher-level units are Open Radio Access Network Distributed Units (O-DUs). 7 . The O-RU according to claim 1 , configured so that the digital signal processing units that execute the digital signal processing with the higher-level units are selected based on at least configuration information. 8 . The O-RU according to claim 1 , configured so that the digital signal processing units that execute the digital signal processing with the higher-level units are switched by exclusive control between the digital signal processing units. 9 . The O-RU according to claim 1 , configured so that the digital signal processing units that execute the digital signal processing with the higher-level units are switched upon receiving a switching command. 10 . The O-RU according to claim 1 , further configured so that the respective digital signal processing units operate by respectively corresponding digital signal processing programs, and the digital signal processing units that execute the digital signal processing with the higher-level units are switched based on at least a state of the digital signal processing programs. 11 . An Open Radio Access Network Radio Unit (O-RU) management method that includes: a process of generating, on a virtualization infrastructure of the O-RU, multiple digital signal processing units configured so as to execute digital signal processing with respectively defined higher-level units; a process of transitioning between states of the respective digital signal processing units so that the respective digital signal processing units are put in an operational state in which digital signal processing can be executed or in a rest state in which digital signal processing cannot be executed; initiating a radio communication process of the O-RU by a first digital signal processing unit that is in the operational state among the multiple digital signal processing units; receiving a state switching signal in the O-RU; switching between the operational state and the rest state in the first digital signal processing unit, which responded to the reception of the state switching signal; switching between the operational state and the rest state in a second digital signal processing unit that is in the rest state and that is different from the first digital signal processing unit, among multiple digital signal processing units, which responded to the reception of the state switching signal; and initiating a radio communication process of the O-RU by the second digital signal processing unit that is in the operational state among the multiple digital signal processing units.
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