The invention relates to a method for providing the functionality of an exchange termination unit and a line termination unit in a communication network. Furthermore, the invention relates to a communication network for the exchange of information that transmits the information on the subscriber side via at least one time-multiplex-oriented partial network and on the transport side via at least one packet-oriented partial network.
The information includes, for example, user data or voice data. The time-multiplex-oriented communication network is, for example, an ISDN (Integrated Service Digital Network) data transmission network. In the time-multiplex-oriented communication network the data is transmitted in various time slots according to a time-multiplex procedure. A packet-oriented communication network is a network in which the information or data is transmitted in data packets. The packet-oriented communication network is, for example, a communication network that operates according to the Internet protocol. A further example of a packet-oriented communication network is an ATM (Asynchronous Transfer Mode) network, but in this case the data packets are called cells.
Functions for operation, administration or maintenance in the time-multiplex-oriented communication network have, for example, been specified in the following standards of the ETSI (European Telecommunications Standards Institute) or of the ITU-T (International Telecommunications Union—Telecommunication Standardization Sector):
Thus, the functions for operation, administration or maintenance refer for example to the switching of test loops or error control. These functionalities are generally summarized under the term OAM mechanisms. OAM stands for Organization Administration and Management of the communication network using a Telecommunications Management Network (TMN) that, for example, has an Operations System (OS) according to CCITT Recommendation M.30 that accesses the Q3 interface.
In the time-multiplex-oriented network, these functions are monitored for the ISDN primary rate access digital section (DS), i.e. for the digital message transmission path between a reference point T and a primary rate access V3 established as a reference point (T lies between the subscriber terminal and the network termination unit on the subscriber side (NT: Network Termination Unit) and V3 lies between the physical line termination unit (LT; Line Termination Unit) on the transport side and the logic exchange termination unit (ET: Exchange Termination Unit), monitored by the exchange termination unit in conjunction with the network termination unit on the subscriber side and the line termination unit on the transport side (see also CCITT Recommendation Q.542 and
“Peter Bocker: ISDN—Das diensteintegrierende digitale Nachrichtennetz [The service-integrating digital message network], third edition, 1990, Springer-Verlag, Heidelberg, pages 149-151” with references to CCITT Recommendations Q.511 and Q.512).
However, in the interaction between time-multiplex-oriented communication networks and packet-oriented communication networks, new problems arise because such OAM tasks (organization, administration and management) have to be distributed between both types of communication network according to the arrangement of the interface.
For a case where the digital ISDN access section DS is replaced by an ATM network and the advantages of the AAL2 (ATM Forum) are used, a simple method is known from European Patent Application EP1 374 629 A1 for the transmission of information within at least one time-multiplex-oriented communication network via at least one packet-oriented communication network, with functions for operation, administration and maintenance of the time-multiplex-oriented communication network continuing to be useable in the time-multiplex-oriented communication network in that these functions are emulated in the packet-oriented network. With this method, at least part of the information is transmitted via the packet-oriented communication network. In doing so, at least part of the functions for operation, administration and maintenance are emulated, i.e. simulated, by the packet-oriented communication network. Essentially unrestricted, continued use of the functions specified for the time-multiplex-oriented communication network is possible in this way.
In contrast, in VoIP networks or generally in the so-called new generation networks (NGN with convergence of voice and data) so-called ISDN-PRI interfaces (interfaces with an ISDN Primary Rate Interface) are required, for which the OAM mechanisms from the time-multiplex-oriented technology also have to be provided in a packet-oriented technology of that kind. In this way, the OAM mechanisms, as described in the relevant standards (G.962, ETS 300 233, ITU-T I.411, I.412, Q.152), could be adopted, which would have an advantageous effect on the reusability of equipment already in use and the reusability of known OAM sequences.
The object of the invention is therefore to specify a method and a communication network by means of which a “Primary Rate Access. Digital Section” (DS), such as the ISDN-PRIs, is monitored in an NGN environment with the existing OAM mechanisms being retained.
This object is achieved with respect to the method in accordance with the invention by a method for providing the functionality of an exchange termination unit and a line termination unit in a communication network that on the subscriber side has at least one time-multiplex-oriented partial network and at least one packet-oriented partial network on the transport side, with a gateway and a media gateway controller or an SIP server being arranged at the transport-side end of the time-multiplex-oriented partial network, with the functionality of the exchange termination unit and of the line termination unit being implemented in the gateway and/or in the media gateway controller or in the SIP server.
With respect to the communication network, the object in accordance with the invention mentioned above is achieved in that a communication network for the exchange of information is provided, that transmits the information on the subscriber side via at least one time-multiplex-oriented partial network and on the transport side via at least one packet-oriented partial network, with a gateway and a media gateway controller or an SIP server being arranged at the transport-side end of the time-multiplex-oriented partial network, with the functionality of an exchange termination unit and of a line termination unit being implemented in the gateway and/or the media gateway controller or in the SIP server.
In this way, the functionality of the logic exchange termination unit and of the physical line termination unit is implemented in the gateway and/or the media gateway controller or the SIP server, by which means, despite the presence of the packet-oriented network with respect to the OAM mechanisms, no changes whatsoever result with respect to the OAM mechanisms run in the previous time-multiplex-oriented networks.
Thus the gateway and/or media gateway controller or the SIP server is fitted with the corresponding time-multiplex-oriented functional logic units (OAM functions and corresponding status machine), so that in the implemented exchange termination unit and the implemented line termination unit functions for the operation and/or administration and/or maintenance are realized in the time-multiplex-oriented partial network for the transmission of information within the complete, i.e. time-multiplex-oriented partial network and packet-oriented partial network.
In an advantageous embodiment of the invention, the functionality of the exchange termination unit can be implemented in the media gateway controller (called a soft switch) and the functionality of the line termination unit can be implemented in the gateway, so that the exchange of signals between the gateway and media gateway controller is performed according to the gateway controller protocol. Corresponding expansions for H.248 (MEGACO), MGCP are possible by defining new packages. For SIP (Session Initiated Protocol) controlled gateways, an implementation by expanding the SIP standard by applying a new standardization proposal is also possible (RFC: Request for Comments). For SIP, this means that either the functionalities of the line termination and of the exchange termination can be arranged in the gateway or the functionality of the line termination can be arranged in the gateway and the functionality of the exchange termination in the SIP server.
In a development of this invention, the packet-oriented communication network can be realized according to the Internet protocol, according to ATM or according to the SIP specification.
For the time-multiplex-oriented communication network, an ISDN network can be used that, as before, is very significant with regard to its propagation. Correspondingly, the functions for operation, administration and maintenance can essentially be performed according to standard ETSI ETS 300 011 and/or according to standard ITU-T G.962 and/or according to standard ETSI ETS 300 233, so that a comparatively simple and fast implementation is possible because mechanisms that are already known and have already been introduced are used for the implementation.
Further advantageous embodiments of the invention are given in the remaining subclaims.
Exemplary embodiments of the invention are explained in the following with the aid of the accompanying drawings. These are as follows:
An overview showing the application of the ISDN primary multiplex interface in the world of conventional time multiplex (TDM—Time Division Multiplex) is first given in the following. Furthermore, requirements are specified that must be fulfilled if parts of the access digital section (DS—access digital section) of the primary digital access are replaced by an ATM network. Furthermore, methods are specified that fulfill these requirements.
ISDN primary multiplex interface model (PRI) with operating and maintenance functions (for a 2048 kbps signal/E1)
The operating and maintenance functions support methods and information elements necessary for the control of the access digital section through a logic exchange termination unit ET or a service node.
An Sa5 bit, an Sa6 bit, an E bit and an A bit of a time slot TSO are relevant for display and control. The bit structure of the time slot TSO and the multi-timeframe structure are specified according to standard ITU-T G.704. The A bit is used for alarm status information between the service network node and customer telephony end -equipment TE. Only the A bit has to be monitored and is transmitted transparently. All other control bits of the time slot TSO are to be transmitted transparently. Furthermore, the elements of the access digital section DS that use CRC methods 4, 6 (cyclic redundancy check) are shown in
Furthermore,
The following table shows the signals that are exchanged between the T-reference point and the access digital section DS under the standard operating conditions and instances of error stipulated in standard ETS 300 011.
The signals exchanged between the access digital section DS and the exchange termination unit ET are specified in the following table:
The following additional signals are necessary to indicate fault conditions that occur with respect to the access digital section DS:
CRC 4 Method
The CRC method is used to protect against faulty frames (framing) and for error performance monitoring. This includes the multi-timeframe method as specified in standard ITU-T G.704.
Operation and Maintenance of the Access Digital Section
The access digital section DS supplies the means for transmitting indication elements and for detecting error cases at the T-reference point interface and at the V3-reference point interface as well as for supporting test procedures. According to standard ETSI ETS 300 233, the following functions are supported in conjunction with network termination NT1 and line termination LT through the exchange termination unit ET:
These complete OAM mechanisms are initially not available when the transmission on the transport side (exchange termination unit side) is replaced by a packet-oriented communication network, e. g. H.248 or Ethernet GigE or 2xFE or ATM. They are, however, again available in a first arrangement according to
A second arrangement according to the invention, schematically illustrated in
Number | Date | Country | Kind |
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10 2004 015 157.1 | Mar 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP05/02058 | 2/26/2005 | WO | 9/26/2006 |