IL196406A

Method. system and access network node for handling sscp messages

Abstract

This record has no abstract on file.

IL196406A, drawing sheet 1
Sheet 1 of 6

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

23 claims: 7 independent, 16 dependent

  1. 1
    Claims:1. A method for handling SSCP messages received at an access node that serves an access network, the method comprises: multicasting, by the access node, a traffic stream generated by a source, to two or 5 more access network receivers, wherein a Streaming Service Control Protocol SSCP is utilized for said traffic stream and wherein each of said receivers is served via a transmission path in the access network, processing SSCP report messages received at the access node from said two or more receivers, comprising analyzing of Quality of Experience (QOE) data retrieved 10 from said SSCP report messages;based on the analyzed QOE data, providing status information, wherein the status information comprises indication of problems, if any, per access network section wherein said section includes a receiver out of said two or more receivers and a transmission path associated with said receiver in the access network;15 using the status information in monitoring the access network.
  2. 2
    The method according to Claim 1, wherein the step of providing the status information comprises generating a QOE evaluating message per multicast session, forwarding the message to a monitoring entity and registering the status information 20 in said entity.
  3. 3
    The method according to Claim 1 or 2, further comprising:- accumulating and updating the status information about said receivers and their associated transmission paths;25 - forming indications of persistent problems in the transmission paths and generating alerts about the persistent problems.
  4. 4
    The method according to any one of the preceding claims, wherein the processing comprises a preliminary step of handling an SSCP sender message 30 received by the access node with said traffic stream transmitted from the source, and further comparing said sender SSCP message with the report SSCP messages received at the access node from the two or more receivers.
  5. 5
    The method according to Claim 4, wherein said comparing comprises checking of at least one of the following parameters of the QOE data:a number of lost frames, BER value, PER value, noise ratio at a specific receiver in comparison with a threshold value set for the respective parameter and in comparison with the respective parameter in the sender SSCP message.
  6. 6
    The method according to any one of the preceding claims, wherein the analyzing of the QOE data comprises filtering floods of said SSCP report messages indicating similar errors.
  7. 7
    The method according to any one of the preceding claims, further comprising initiating maintenance and/or repair operations based on the indication of problems in the access network.
  8. 8
    A system for handling SSCP messages, comprising at least one access node AN, at least one processing unit PU and at least one monitoring entity ME, wherein said at least one access node AN is capable of supporting a Streaming Service Control Protocol SSCP and serving two or more access network receivers of an access network via two or more respective transmission paths;the access node being capable of multicasting a traffic stream, generated by a source, to said two or more access network receivers and to receive report SSCP messages from said two or more receivers;said at least one processing unit PU being adapted to process the report SSCP messages, form status information and supply it to said at least one monitoring entity ME, wherein the processing comprises analyzing Quality of Experience data (QOE data) retrieved from said SSCP report messages, the status information is formed based on the analyzed QOE data and comprises indications of problems, if any, per access network section wherein said section includes a receiver out of said two or more receivers and a transmission path associated with said receiver in the access network;said at least one monitoring entity ME being capable at least of monitoring the access network using said status infonnation.
  9. 9
    The system according to Claim 10, wherein said AN, PU and ME are arranged in one of the following combinations:AN incorporates both PU and ME;AN incorporates PU while ME is a separate unit;AN is a separate unit while ME incorporates PU.
  10. 10
    The system according to Claim 8 or 9, wherein the PU and the ME either reside in one of the following locations, or are distributed between at least two of the following locations:a Network Management and/or Service system NM/SS, a Central Office serving the access network, a Network and/or Service provider, an access node, a network node in the access network, a network node beyond the access network.
  11. 11
    The system according to any one of Claims 8 to 10, wherein said monitoring entity ME is further capable of generating alerts for performing repair and maintenance operations in the access network, based on said indications.
  12. 12
    The system according to any one of Claims 8 to 11, further adapted to perform one or more of the following functions:filtering the status infonnation to distinguish problematic receivers and their associated transmission paths versus non-problematic ones;identifying persistent problems related to specific problematic receivers and their associated transmission paths, identifying problems of peak-time consumption of multicast services, generating alerts;initiating corrective actions if needed.
  13. 13
    The system according to any one of claims 8 to 12, wherein the access node is a DSLAM (Digital Signal Line Access Multiplexer) or MSAN (Multiservice Access Node).
  14. 14
    An Access Node AN for handling streaming service control protocol (SSCP) messages, being operative to:- multicast a traffic stream, generated by a source, to two or more receivers in an access network via respective transmission paths, while utilizing a Streaming Service Control Protocol SSCP;- process SSCP report messages received from said receivers by analyzing QOE data retrieved from the SSCP report messages;- based on the analysis of said QOE data, provide status infonnation to at least one monitoring entity ME for monitoring said access network, wherein the status infonnation comprises indication of problems, if any, per access network section, wherein said section includes a receiver out of said two or more receivers and a transmission path associated with said receiver in the access network.
  15. 15
    The Access Node according to Claim 14, operative to provide the status infonnation by generating a QOE evaluating message per multicast session.
  16. 16
    The Access Node according to Claim 14 or 15, further adapted to process an SSCP sender message, received at the access node with said traffic stream sent from the source, and to compare said SSCP sender message with said SSCP report messages.
  17. 17
    The Access Node according to any one of claims 14 to 16, further capable of filtering floods of said SSCP report messages indicating similar errors.
  18. 18
    The Access Node according to any one of claims 14 to 17, designed on the basis of a DSLAM (Digital Signal Line Access Multiplexer) or MSAN (Multiservice Access Node).
  19. 19
    A monitoring entity ME for monitoring an access network, the ME being adapted to cooperate with at least one access node AN handling SSCP report messages obtained from two or more access network receivers in response to a multicast traffic stream sent to said receivers from said at least one access node AN, the ME being capable of:- receiving, from said at least one access node AN, QOE information reflecting QOE data obtained from said report messages, wherein QOE data obtained from one report message characterizes Quality of Experience of a specific access network receiver while receiving said multicast traffic stream, - analyzing said QOE information;- based on the analysis, providing status information and registering it, wherein the status information comprises indication of problems, if any, per access network section and wherein said section includes a receiver out of said two or more receivers and a transmission path associated with said receiver in the access network;monitoring the access network using said status information being updated by receiving and analyzing more QOE information from said at least one access node AN.
  20. 20
    The monitoring entity according to Claim 19, wherein the QOE information is received from AN out of said at least one AN in the form of a QOE evaluating message.
  21. 21
    The monitoring entity ME according to Claim 19, wherein the QOE information is received from AN out of said at least one AN in the form of a copy of an SSCP message sent by the AN to the source as a report message.
  22. 22
    The monitoring entity ME according to any one of Claims 19 to 21, further adapted to perform one or more of the following functions:filtering the status information in the data base to distinguish problematic receivers and their associated transmission paths versus non-problematic ones;identifying persistent problems related to specific problematic receivers and their associated transmission paths, identifying problems of peak-time consumption of multicast services, generating alerts;initiating corrective actions if needed.
  23. 23
    A software product comprising computer implementable instructions and data stored on a computer readable medium;the software product being capable of implementing operations of the method according to any one of Claims 1 to 7, when 5 being run in a computer.
Independent claims23