H04L47/24

SYSTEM AND METHOD OF A HIGH BUFFERED HIGH BANDWIDTH NETWORK ELEMENT
20230006931 · 2023-01-05 ·

A method and apparatus of a network element that processes a packet in the network element is described. In an exemplary embodiment, the network element receives a data packet that includes a destination address. The network element receives a packet, with a packet switch unit, wherein the packet was received by the network element on an ingress interface. The network element further determines if the packet is to be stored in an external queue. In addition, the network element identifies the external queue for the packet based on one or more characteristics of the packet. The network element additionally forwards the packet to a packet storage unit, wherein the packet storage unit includes storage for the external queue. Furthermore, the network element receives the packet from the packet storage unit and forwards the packet to an egress interface corresponding to the external queue.

METHOD FOR INFORMATION TRANSMISSION, AND COMMUNICATION DEVICE

A method for information transmission is performed by a base station. The method comprises: obtaining weights corresponding to different input modalities; and on the basis of input data of at least one input modality and a weight of an input modality corresponding to each item of input data, determining a processing result of the input data.

MINI-TOKEN BUCKET FOR UPLINK TRANSMISSION
20230006935 · 2023-01-05 ·

Embodiments of apparatuses and methods for uplink data transmission preparation and a baseband chip for packet preparation for uplink transmission are disclosed. In an example, a method for packet preparation for uplink transmission can include determining, by a user equipment, a quality of service identifier associated with a quality of service flow. The method can also include mapping, by the user equipment, the quality of service identifier to a group token level. The method can further include processing, by the user equipment, the quality of service flow in accordance with the group token level.

MINI-TOKEN BUCKET FOR UPLINK TRANSMISSION
20230006935 · 2023-01-05 ·

Embodiments of apparatuses and methods for uplink data transmission preparation and a baseband chip for packet preparation for uplink transmission are disclosed. In an example, a method for packet preparation for uplink transmission can include determining, by a user equipment, a quality of service identifier associated with a quality of service flow. The method can also include mapping, by the user equipment, the quality of service identifier to a group token level. The method can further include processing, by the user equipment, the quality of service flow in accordance with the group token level.

MaxMesh: mesh backhaul routing
11570112 · 2023-01-31 · ·

A system is disclosed, comprising: a centralized routing node configured to: identify a set of congested links based on the link utilization statistics, each congested link having at least one traffic flow that may be active, each traffic flow having at least one traffic source and a path set comprising a set of nodes and links that may be used by the traffic flow as packets travel from the at least one traffic source to one or more destinations; identify a set of non-congested links based on the link utilization statistics, each non-congested link sharing at least one traffic source with a traffic flow of a congested link in the set of congested links; identify a path fork in a path set between a source and a destination of a particular traffic flow associated with a particular congested link in the set of congested links; and compute a new utilization level for the particular congested link that would result from moving the particular traffic flow from the particular congested link to a particular non-congested link in the set of non-congested links.

MaxMesh: mesh backhaul routing
11570112 · 2023-01-31 · ·

A system is disclosed, comprising: a centralized routing node configured to: identify a set of congested links based on the link utilization statistics, each congested link having at least one traffic flow that may be active, each traffic flow having at least one traffic source and a path set comprising a set of nodes and links that may be used by the traffic flow as packets travel from the at least one traffic source to one or more destinations; identify a set of non-congested links based on the link utilization statistics, each non-congested link sharing at least one traffic source with a traffic flow of a congested link in the set of congested links; identify a path fork in a path set between a source and a destination of a particular traffic flow associated with a particular congested link in the set of congested links; and compute a new utilization level for the particular congested link that would result from moving the particular traffic flow from the particular congested link to a particular non-congested link in the set of non-congested links.

Methods and systems for managing quality of service in a networked storage environment

Methods and systems for a networked storage system are provided. One method includes assigning a quality of service (QOS) parameter for a storage volume of a networked storage environment having a first storage node and a second storage node, where the QOS parameter is defined by a throughput value that defines a maximum data transfer rate and a number of input/output (I/O) operations executed within a time period (IOPS); distributing the QOS parameter between the first storage node and the second storage node; determining that throughput credit is available for processing an I/O request for using the storage volume; determining that IOPS credit is available for processing the request by the first storage node; and processing the I/O request when both the throughput credit and the IOPS credit is available.

Methods and systems for managing quality of service in a networked storage environment

Methods and systems for a networked storage system are provided. One method includes assigning a quality of service (QOS) parameter for a storage volume of a networked storage environment having a first storage node and a second storage node, where the QOS parameter is defined by a throughput value that defines a maximum data transfer rate and a number of input/output (I/O) operations executed within a time period (IOPS); distributing the QOS parameter between the first storage node and the second storage node; determining that throughput credit is available for processing an I/O request for using the storage volume; determining that IOPS credit is available for processing the request by the first storage node; and processing the I/O request when both the throughput credit and the IOPS credit is available.

Distributed antenna system-based on time sensitive network

A TSN-based distributed antenna system including a headend unit, one or more TSN switches, and one or more remote units and a fronthaul transport network constituted by the headend unit, the TSN switch, and the remote unit is provided. The packet-based fronthaul network constituted by the headend unit, the TSN switch, and the remote unit transmits traffic in a time-deterministic manner while minimizing packet loss through Ethernet to which TSN standards are applied.

Distributed antenna system-based on time sensitive network

A TSN-based distributed antenna system including a headend unit, one or more TSN switches, and one or more remote units and a fronthaul transport network constituted by the headend unit, the TSN switch, and the remote unit is provided. The packet-based fronthaul network constituted by the headend unit, the TSN switch, and the remote unit transmits traffic in a time-deterministic manner while minimizing packet loss through Ethernet to which TSN standards are applied.