Method for monitoring the quality of a data connection, subscriber station, and network management unit for use in the method

US11323898B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11323898-B2
Application numberUS-201716343318-A
CountryUS
Kind codeB2
Filing dateOct 16, 2017
Priority dateOct 21, 2016
Publication dateMay 3, 2022
Grant dateMay 3, 2022

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

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Monitoring of quality of service includes monitoring the quality measured at the radio modem based on measurements in the physical layer and monitoring of the network state by the physical layer or a higher layer wherein the monitoring entity bypasses one or more intermediate layers and directly accesses the physical layer, which provides the necessary information.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for monitoring quality of a data connection of a transportation vehicle within a transmission network, the method comprising: establishing, by a communication module of a transportation vehicle including, the data connection between the communication module and a base station of a cell of the transmission network via a radio channel; establishing, by the communication module, a vehicle-to-vehicle data connection with another communication module of another transportation vehicle, wherein the transportation vehicle and the another transportation vehicle are engaged in a platooning maneuver to produce a shortest possible following distance between the transportation vehicle and the another transportation, wherein the transportation vehicle is a platooning lead vehicle, and wherein the another transportation vehicle is a platooning convoy vehicle; receiving, at an abstraction layer and at a physical layer of the communication module, data from the transmission network, wherein the data is indicative of a state of the data connection with the transmission network, and wherein the physical layer directly interfaces with the abstraction layer and is separate from a data link layer; monitoring, by a monitoring module of an application program in an application layer of the communication module, the state of the data connection based on the data, wherein the application layer interfaces with the physical layer via an abstraction layer and the data is received by the monitoring module from the abstraction layer and from the physical layer via the abstraction layer and without passing through the data link layer and one or more other intermediate layers, wherein the data is supplemented with quality of service parameters measured at the physical layer and received by the monitoring module, and wherein the measured quality of service parameters indicate a present latency of the data connection; in response to the present latency being greater than a previously measured latency of the data connection, transmitting, by the communication module, a notification to the another communication module to increase the following distance between the transportation vehicle and the another transportation vehicle; and in response to the present latency being less than the previously measured latency of the data connection, transmitting, by the communication module, a notification to the another communication module to decrease the following distance between the transportation vehicle and the another transportation vehicle. 2. The method of claim 1 , wherein the information passed on to the monitoring module about the state of the transmission network is the information about the network load and/or information about the state of the subscriber station in the network. 3. The method of claim 2 , wherein the information about the state of the subscriber station in the network specifies whether the subscriber station has come close to a cell boundary. 4. The method of claim 3 , wherein the subscriber station transmits the information about the current position of the subscriber station and the planned route to the network management unit. 5. The method of claim 1 , further comprising receiving a predicted future state of the transmission network determined by a network management unit of the transmission network. 6. The method of claim 5 , wherein the information about the current position of the subscriber station and the planned route of the subscriber station is considered for the prediction of the state of the transmission network. 7. A communication module of a transportation vehicle for monitoring quality of a data connection with a base station of a cell of a transmission network, the communication module comprising: an application program including a monitoring module and residing at an application layer of the mobile subscriber station, wherein the application program establishes a vehicle-to-vehicle data connection with another application program of another communication module of another transportation vehicle, wherein the transportation vehicle and the another transportation vehicle are engaged in a platooning maneuver to produce a shortest possible following distance between the transportation vehicle and the another transportation, wherein the transportation vehicle is a platooning lead vehicle, and wherein the another transportation vehicle is a platooning convoy vehicle, wherein the monitoring module monitors a state of the data connection at least based on quality of service parameter measurements taken at a physical layer of the communication module, wherein the physical layer is separate from a data link layer, wherein the application layer interfaces with the physical layer via an abstraction layer, wherein the measurements in the physical layer are passed on directly to the application layer via the abstraction layer and without passing through the data link layer and one or more other intermediate layers, wherein the monitoring module monitors the state of the data connection based on information received, from the transmission network, at the abstraction layer and the physical layer, wherein the information is indicative of a transmission network state wherein the monitored quality of service parameters indicate a present latency of the data connection; wherein, in response to the present latency being greater than a previously measured latency of the data connection, the monitoring module transmits a notification to the another communication module to increase the following distance between the transportation vehicle and the another transportation vehicle, and wherein, in response to the present latency being less than the previously measured latency of the data connection, the monitoring module transmits a notification to the another communication module to decrease the following distance between the transportation vehicle and the another transportation vehicle. 8. The subscriber station of claim 7 , wherein the subscriber station transmits the information about the current position of the subscriber station and the planned route to a network management unit, and receives the information about the state of the transmission network from the network management unit. 9. A network management unit for monitoring quality of a data connection of a base station of a cell of a transmission network with a communication module of a transportation vehicle, the network management unit being configured to transmit to the communication module data indicating a state of the data connection, wherein the communication module establishes a vehicle-to-vehicle data connection with another communication module of another transportation vehicle, wherein the transportation vehicle and the another transportation vehicle are engaged in a platooning maneuver to produce a shortest possible following distance between the transportation vehicle and the another transportation, wherein the transportation vehicle is a platooning lead vehicle, and wherein the another transportation vehicle is a platooning convoy vehicle wherein the data is received at an abstraction layer and a physical layer of the communication module, wherein the physical layer is separate from a data link layer, wherein the physical layer interfaces with an application layer of the communication module via the abstraction layer, and wherein a monitoring module of an application program in the application layer monitors the state of the data connection based on a combination of the data, received at the abstraction layer and the physical layer, and quality of service parameter measurements taken at the physical layer and passed on directly to the application layer via

Assignees

Inventors

Classifications

  • H04W24/08Primary

    Testing, {supervising or monitoring} using real traffic · CPC title

  • Self-organising networks, e.g. ad-hoc networks or sensor networks · CPC title

  • where the origin of the information is another vehicle · CPC title

  • Platooning, i.e. convoy of communicating vehicles · CPC title

  • Upper layer protocols {(network arrangements or communication protocols for networked applications H04L67/00)} · CPC title

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What does patent US11323898B2 cover?
Monitoring of quality of service includes monitoring the quality measured at the radio modem based on measurements in the physical layer and monitoring of the network state by the physical layer or a higher layer wherein the monitoring entity bypasses one or more intermediate layers and directly accesses the physical layer, which provides the necessary information.
Who is the assignee on this patent?
Volkswagen Ag
What technology area does this patent fall under?
Primary CPC classification H04W24/08. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 03 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).