Facilitation of intelligent remote radio unit for 5g or other next generation network
Abstract
The current disclosure facilitates the use of intelligent remote radio unites via the use of microservices and modems to make the radio head intelligent. If an enhanced common public radio interface (eCPRI) link is down, the radio head can communicate over the air via the wireless network to an operations, administration and maintenance (OAM) network. Thus, if the microservice is located at the radio head, the microservice can continuously monitor the radio head and evaluate its status. The microservice can then use this information to determine a status (e.g., latency, latency time, or the like) of the radio head and provide that information to the OAM. The microservice can facilitate rebooting or restarting of the radio head and/or run additional testing and/or measures on the link and/or the port of the radio head and provide that information over the air.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A method, comprising:
monitoring, via a network by first remote radio unit equipment comprising a processor, a first radio link between the first remote radio unit equipment and a distributed unit device to determine a first latency associated with the first radio link; receiving, by the first remote radio unit equipment, a second latency value associated with a second latency of a second radio link associated with second remote radio unit equipment connected via the network; and in response to determining that the first latency value is less than the second latency value, generating, by the first remote radio unit equipment, a performance indicator value.
2 . The method of claim 1 , further comprising:
in response to generating the performance indicator value, sending, by the first remote radio unit equipment, the performance indicator value to third remote radio unit equipment.
3 . The method of claim 2 , wherein the third remote radio unit equipment is neighboring remote radio unit equipment to the first remote radio unit equipment.
4 . The method of claim 1 , further comprising:
comparing, by the first remote radio unit equipment, the second latency value to the first latency value, resulting in a latency comparison value; and in response to the latency comparison value being determined to have satisfied a condition, performing, by the first remote radio unit equipment, a diagnostic procedure.
5 . The method of claim 1 , wherein the first radio link is an evolved common public radio core interface link.
6 . The method of claim 1 , wherein the receiving is responsive to a determination that the first latency value is less than a first threshold value.
7 . The method of claim 1 , wherein the monitoring is performed in response to a time interval being determined to have lapsed.
8 . First remote radio unit equipment, comprising:
a processor; and a memory that stores executable instructions that, when executed by the processor, facilitate performance of operations, comprising: monitoring a first link between the first remote radio unit equipment and a distributed unit device to determine a first latency associated with the first link; receiving a second latency value associated with a second latency of a second link associated with second remote radio unit equipment; and in response to determining that the first latency value is less than the second latency value, generating a performance indicator value.
9 . The first remote radio unit equipment 8 , wherein the operations further comprise:
in response to generating the performance indicator value, sending the performance indicator value to third remote radio unit equipment.
10 . The first remote radio unit equipment 9 , wherein the third remote radio unit equipment is neighboring remote radio unit equipment to the first remote radio unit equipment.
11 . The first remote radio unit equipment 8 , wherein the operations further comprise:
comparing the second latency value to the first latency value, resulting in a latency comparison value; and in response to the latency comparison value being determined to have satisfied a condition, initiating a diagnostic procedure.
12 . The first remote radio unit equipment 11 , wherein the operations further comprise:
in response to initiating the diagnostic procedure, determining that a malfunction of the first link has occurred.
13 . The first remote radio unit equipment 12 , wherein the operations further comprise:
in response to determining that the malfunction of the first link has occurred, temporarily removing the first remote radio unit equipment from usage in fulfilling a network service.
14 . The first remote radio unit equipment 13 , wherein the operations further comprise:
in response to temporarily removing the first remote radio unit equipment from the usage in fulfilling the network service, initiating a software repair function to address the malfunction.
15 . The first remote radio unit equipment 8 , wherein the operations further comprise:
in response to a time duration being determined to have lapsed, determining that there has been a lapse in communication from neighbor remote radio unit equipment that neighbors the first remote radio unit equipment.
16 . The first remote radio unit equipment 8 , wherein the operations further comprise:
receiving a downlink packet from third remote radio unit equipment, wherein the downlink packet comprises a downlink delay value.
17 . The first remote radio unit equipment 16 , wherein the third remote radio unit equipment is neighbor remote radio unit equipment that neighbors the first remote radio unit equipment.
18 . A non-transitory machine-readable medium, comprising executable instructions that, when executed by a processor, facilitate performance of operations, comprising:
assessing a first radio link between first remote radio unit equipment and a distributed unit device associated with a network to determine a first latency associated with the first radio link; receiving a second latency value associated with a second latency of a second link associated with second remote radio unit equipment; and generating a performance indicator value in response to determining that the first latency value is less than the second latency value.
19 . The non-transitory machine-readable medium of claim 18 , wherein the operations further comprise:
sending the performance indicator value to third remote radio unit equipment.
20 . The non-transitory machine-readable medium of claim 18 , wherein the third remote radio unit equipment is neighboring remote radio unit equipment to the first remote radio unit equipment.Join the waitlist — get patent alerts
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