EP1540894B1 - Procédé et système permettant d'assurer de la réception uninterrompue d'une transmission IP dans une réception mobile - Google Patents

Procédé et système permettant d'assurer de la réception uninterrompue d'une transmission IP dans une réception mobile Download PDF

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Publication number
EP1540894B1
EP1540894B1 EP03795039A EP03795039A EP1540894B1 EP 1540894 B1 EP1540894 B1 EP 1540894B1 EP 03795039 A EP03795039 A EP 03795039A EP 03795039 A EP03795039 A EP 03795039A EP 1540894 B1 EP1540894 B1 EP 1540894B1
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EP
European Patent Office
Prior art keywords
transmission
frames
frame
service
terminal device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP03795039A
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German (de)
English (en)
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EP1540894A1 (fr
Inventor
Vesa c/o Digita Oy ERKKILÄ
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Digita Oy
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Digita Oy
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Publication date
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Publication of EP1540894A1 publication Critical patent/EP1540894A1/fr
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Anticipated expiration legal-status Critical
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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H20/00Arrangements for broadcast or for distribution combined with broadcast
    • H04H20/20Arrangements for broadcast or distribution of identical information via plural systems
    • H04H20/22Arrangements for broadcast of identical information via plural broadcast systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H20/00Arrangements for broadcast or for distribution combined with broadcast
    • H04H20/53Arrangements specially adapted for specific applications, e.g. for traffic information or for mobile receivers
    • H04H20/57Arrangements specially adapted for specific applications, e.g. for traffic information or for mobile receivers for mobile receivers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H20/00Arrangements for broadcast or for distribution combined with broadcast
    • H04H20/86Arrangements characterised by the broadcast information itself
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H60/00Arrangements for broadcast applications with a direct linking to broadcast information or broadcast space-time; Broadcast-related systems
    • H04H60/02Arrangements for generating broadcast information; Arrangements for generating broadcast-related information with a direct linking to broadcast information or to broadcast space-time; Arrangements for simultaneous generation of broadcast information and broadcast-related information
    • H04H60/07Arrangements for generating broadcast information; Arrangements for generating broadcast-related information with a direct linking to broadcast information or to broadcast space-time; Arrangements for simultaneous generation of broadcast information and broadcast-related information characterised by processes or methods for the generation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04HBROADCAST COMMUNICATION
    • H04H2201/00Aspects of broadcast communication
    • H04H2201/60Aspects of broadcast communication characterised in that the receiver comprises more than one tuner

Definitions

  • the invention relates to telecommunications, in particular to the uninterrupted reception of an IP transmission with a mobile terminal device.
  • the invention relates to the uninterrupted reception of an IP broadcast.
  • OFDM modulation Orthogonal Frequency-division multiplex-ing
  • single-frequency networks By using single-frequency networks it is possible to build wide-ranging networks and to ensure an uninterrupted reception of services throughout the whole network. Generally, however, there is a wish to avoid the same service to be transmitted in networks which use several transmitters operating at different frequencies or several single-frequency networks operating at different frequencies. In this application, reference is not made to single-frequency networks specifically, since from the standpoint of the invention it is not important whether the service is transmitted at the same frequency using one or more transmitters.
  • DVB Digital Video Broadcasting
  • DAB Digital Audio Broadcasting
  • the information is transmitted by means of symbols.
  • the duration of a symbol varies from a couple of hundreds of micro seconds to a little more than one millisecond.
  • one symbol may contain data from all services coming along with the same signal. In that case, stopping to receive the signal for a moment and tuning the receiver to another frequency results in an interruption in the reception. Interruptions cannot naturally be accepted.
  • one symbol typically contains data from one or two services at the most. Due to this, short interruptions are possible in the DAB system. This, however, requires that the receiver can be quickly tuned to another frequency. If a transmission to be transmitted at another frequency contained different services, a change in the DAB standard would be necessary in order to be able, by means of the DAB definition, to create a system that enables one to transmit several services in such a manner that the change over to another frequency does not result in interruptions.
  • IP encapsulation or tunnelling The interruptions in the IP traffic caused by the change from one frequency to another can be corrected by means of a specific error correction or buffers. In case one moves over to another frequency very quickly, the portion of the payload from the total load is big, and error correction is a functional solution. Generally, however, there is no guarantee about the fact that the delays and errors caused by the change of frequency would be small. In case the receiver has a return channel at its disposal, the missing or defective packets can be requested once again. This takes time and consumes the limited telecommunication capacity shared with the other terminal devices. In addition, it is not possible to arrange a return channel in every terminal device.
  • Prior art includes EP 1073224 A2 which discloses a radio transmission signal consisting of signal frames that comprise a dynamic data part and a quasi-static data part as well as a method to perform a seamless switching of a receiver for such radio transmission signals from a first currently tuned frequency to a second alternative frequency.
  • the dynamic data part of a respective frame contains an indicator showing in which following frame the quasi-static data part of this respective frame will be repeated.
  • the objective of the invention is to eliminate the drawbacks referred to above or at least to significantly alleviate them.
  • One specific objective of the invention is to disclose a new type of method and system for the uninterrupted reception of an IP based broadcast with a mobile terminal device.
  • the present invention relates to the uninterrupted reception of an IP based broadcast with a mobile terminal device.
  • Characteristic of the method in accordance with the invention is to give the receiver enough time to get tuned to a new frequency. Time is needed for finding out the quality of the receiver's transmission as well as for changing over to a second receiver, in case the quality of the second receiver is better than that of the first one.
  • the IP packets to be sent are arranged in such a manner that they are consecutive in respect of time, and enough time is left in between them for tuning.
  • the advantage of the solution of IP level as compared to prior art is in that the various existing IP services are built in such a manner that they function, although the packets would not flow evenly throughout the network. This is due to the fact that various random delays typically occur in IP networks. Due to this, the adding of delays at this layer is natural, and the functionality of the services can be ensured without complicated timing systems.
  • the present invention enables one to build such a system in which it is possible to ensure the uninterrupted reception of an IP packet stream in a mobile terminal device with no return channel. Furthermore, the invention enables one to perform smooth changes both from one frequency to another inside the transmission system and between two different transmission systems.
  • Fig. 1 represents the functioning of the method in accordance with the invention.
  • a system is utilised that comprises two transmitters and a receiver. There may be even several transmitters.
  • the stream transmitted by the first transmitter is shown at point 10
  • the stream transmitted by the second transmitter is shown at point 11.
  • transmission streams 10 and 11 the desired service is transmitted.
  • the receiver receives the chosen stream 12, which in the example of the figure is one or the other of the transmission streams 10 or 11.
  • the chosen stream 12 which in the example of the figure is one or the other of the transmission streams 10 or 11.
  • the signal of the second transmitter is better. There are two possibilities of acting during the pause.
  • the receiver In both cases (points 13 and 14), the receiver is tuned to a new frequency as the pause starts, and the quality of the signal occurring at this frequency is measured.
  • the procedure in accordance with point 13 is used, according to which the receiver is tuned to the original frequency after the measurement.
  • the original signal In case the original signal is of lower quality than the measured new signal, one acts as shown at point 14.
  • Point 14 corresponds to point 13 in every respect except for the fact that after the measurement, the receiver is no longer tuned but the tuning of the measured station is left in force.
  • Fig. 2 represents making the pauses as shown in Fig. 1 in a real IP transmission.
  • the services to be transmitted have been evenly divided into a data stream at step IP1.
  • the packets may flow irregularly because there are different random delays in different services.
  • Fig. 2 shows an application transmitting four different services, wherein the packet symbols P1, P2, P3 and P4 correspond to the service.
  • the services are divided into two different transmission frames A and B.
  • the packets of services P1 and P2 have been placed in frame A
  • the packets of services P3 and P4 have been placed in frame B.
  • There may be even more frames and services as long as the frame used by the service is not changed in the middle of the transmission. In the example two frames are used that are transmitted by turns.
  • frame B functions as a pause for frame A as shown in Fig. 1 and vice versa.
  • pauses have been arranged in this manner, making pauses does not lead to the decreasing of the payload to be transmitted, instead it is a question about rhythmising the transmission, in which the capacity of the transmission path can be made use of all the time.
  • a separate signalling packet is placed that contains information on the services to be transmitted in the frame. It also possible to place in the signalling packet information on alternative frequencies or transmitter parameters.
  • Fig. 3 represents a transmission system according to the invention.
  • the data sources 30, 31 and 32 shown in the figure are servers or other data sources.
  • the content of the data sources has been arranged in such a manner that services which one wishes to receive simultaneously using the same terminal device have been arranged in the same data source.
  • the number of terminal devices has not been limited, instead their number can be varied when necessary.
  • the system in accordance with the invention places the piece of information of each data source in a frame type of their own according to the method as shown in Fig. 2 .
  • the frames are arranged in the encoding unit MIPE.
  • the encoding unit MIPE may add to the frames also control data or some other information to be used in the reception.
  • the encoding unit directs the packets to the appropriate relay station through the information network 37.
  • the information network 37 can be any telecommunications network which enables one to ensure a sufficient quality of the service. A sufficient quality of the service can be ensured typically in a network in which the data transfer delays are small or standard ones.
  • the encoding unit MIPE is responsible for checking that the services to be transmitted are sent according to the limitations, and that there is e.g. no attempt to exceed the maximum transfer rate. To ensure this, the encoding unit MIPE must be aware of the maximum allowed rate throughout the whole transmission path.
  • the transmitting stations 34, 35 and 36 are typically transmitting stations in service.
  • the relay station consists of four components.
  • the first part is an IP encapsulator 33 which receives IP packet traffic from the information network 37 and converts the frames into the frame form used by the transmission system.
  • As a second component it is possible to use a multiplexer MUX which enables one to include in the same transmission stream services that are not transmitted on IP basis. These typically include radio and TV broadcasts.
  • the multiplexer MUX is not an obligatory component.
  • As a third component there is a modulator MOD which modulates the signal to be transmitted, which signal is amplified by a fourth component, which is an output stage PA. The amplified and modulated signal is transmitted to a transmission antenna (not shown).
  • Fig. 4 represents a receiver in accordance with the invention.
  • the receiver includes a tuner 40, a demodulator 41, a demultiplexer 42, an IP decoder 43, as well as control units 44 and 45.
  • the control units can also be combined. The use of two units enables one to add functionality to such devices that are otherwise capable of reception except for the fact that the logic required for applying the method in accordance with the invention lacks. Devices of this kind include e.g. computers.
  • the purpose of the control units is to arrange the tuning, measuring and re-tuning during a pause in the transmission. When the control unit detects a pause after a frame, it gives the tuning unit 40 a command to get tuned to a new frequency, whose quality is measured.
  • the tuning In case the quality is better than the previous one, the tuning remains in use. In case the quality is lower, the tuning unit 40 gets tuned back to the previous frequency. After this it is possible to receive the next packet.
  • the receiver maintains a mean value of the measuring results of different channels and tries to always receive the best possible station.
  • the changing from one transmission system to another is performed in the same manner as the changing of the frequency inside a transmission system in accordance with one technology.
  • Fig. 5 represents a sectioning algorithm to be used in the arrangement of frames as shown in Figs. 2 and 3 .
  • the sectioning algorithm is performed in the encoding unit MIPE and in the transmitting data source 30, 31 or 32.
  • the data source asks the encoding unit for a permission to send continuous data stream at a certain rate via certain relay stations, step 50.
  • the encoding unit checks whether there is room in frame A at all the desired relay stations. If there is no room in frame A, frame B is checked next, step 51. If there are more frames, they are all gone through, until a frame which has enough capacity has been found. If there is enough capacity for the broadcast, permission to transmit is granted, step 54.
  • the encoding unit sends the data source a request to wait and tries to arrange a sufficient capacity by transferring previous services between the frames, step 52. After this, the adequacy of the capacity is checked, step 53. In case the arrangement has brought enough capacity, permission to transmit is granted, step 54. If the re-arrangement does not lead to any results, the encoding unit does not give the data source permission to transmit, step 55.
  • Fig. 6 represents one arranging algorithm to be used in a system in accordance with the invention.
  • the re-arrangement of the transmissions can be implemented e.g. by going through all the possible combinations, step 60.
  • the encoding unit places the transmissions of every data source either in source A or B, and the capacity is compared to the need for capacity of the combinations, step 61.
  • Such alternatives are rejected in which the capacity of some relay station, as one or the other of the groups is concerned, is exceeded, step 62. From the remaining alternatives the one is chosen in which the free capacity of frame B of all combined stations is as big as possible, step 62.
  • the invention is not limited merely to the examples of its embodiments referred to above, instead various modifications are possible within the scope of the inventive idea defined by the claims.

Landscapes

  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Reduction Or Emphasis Of Bandwidth Of Signals (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Data Exchanges In Wide-Area Networks (AREA)
  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)

Claims (18)

  1. Procédé permettant d'assurer une réception ininterrompue d'une transmission IP comprenant un ou plusieurs services, le procédé comprenant les étapes consistant à :
    envoyer une transmission IP avec un ou plusieurs émetteur recevoir la transmission IP avec un dispositif terminal ;
    surveiller des fréquences de transmission alternatives ; et
    syntoniser le dispositif terminal à une nouvelle fréquence, lors de la détection d'une pause dans la transmission IP reçue ;
    caractérisé en ce que la transmission IP est fragmentée en au moins deux trames, de manière que des paquets de données afférents au même service soit toujours transmis dans la même trame, dans lequel l'une des au moins deux trames sert de pause dans la transmission pour l'autre trame.
  2. Procédé selon la revendication 1, caractérisé en ce que les trames mentionnées ci-dessus sont transmises de manière que la deuxième trame mentionnée ci-dessus serve de pause pour la première trame mentionnée ci-dessus.
  3. Procédé selon la revendication 1 ou 2, caractérisé en ce que le dispositif terminal est syntonisé à une nouvelle fréquence durant la pause mentionnée ci-dessus, et la qualité de la transmission apparaissant à la nouvelle fréquence est mesurée.
  4. Procédé selon la revendication 3, caractérisé en ce que le dispositif terminal est resyntonisé à une fréquence antérieure, dans le cas où la nouvelle fréquence mesurée est plus faible que l'antérieure.
  5. Procédé selon la revendication 1 ou 2, caractérisé en ce que l'unité de codage est utilisée pour agencer les services pour qu'ils soient transmis dans lesdites trames.
  6. Procédé selon la revendication 1, 2 ou 5, caractérisé en ce que l'espace disponible dans les trames est optimisé par réagencement de services à transmettre entre les trames, dans le cas où le service à transmettre demande plus d'espace que l'espace disponible dans des trames séparées.
  7. Procédé selon l'une quelconque des revendications 1 à 6, caractérisé en ce que, au début de la trame, est placé un élément d'information de signalisation comprenant l'information au sujet du contenu de la trame.
  8. Procédé selon la revendication 7, caractérisé en ce que l'élément d'information de signalisation comprend un élément d'information au sujet des durées de pause des services inclus dans la trame.
  9. Procédé selon l'une quelconque des revendications 1 à 8, caractérisé en ce que les trames sont transmises dans un ordre déterminé.
  10. Système de transmission, permettant d'assurer une réception ininterrompue d'une transmission IP comprenant un ou plusieurs services, le système comprenant :
    au moins une source de données (30, 31 et 32) pour fournir un service ;
    au moins une station de transmission (34, 35 et 36), pour envoyer le service à un dispositif terminal ; et
    un réseau d'information (37) pour connecter les sources de données et les stations de transmission ;
    caractérisé en ce que le système comprend en outre :
    une unité de codage (MIPE) pour coder le service à transmettre à partir des sources de données (30, 31 et 32) et pour fragmenter en au moins deux trames, avant d'envoyer au réseau d'information (37), de manière que des paquets de données concernant le même service soient toujours transmis dans la même trame, dans lequel l'une des au moins deux trames sert de pause dans la transmission pour l'autre trame.
  11. Système selon la revendication 10, caractérisé en ce que l'unité de codage (MIPE) est agencée pour fragmenter les trames, de manière que la deuxième trame serve de pause pour la première trame.
  12. Système selon la revendication 10 ou 11, caractérisé en ce que l'unité de codage (MIPE) est agencée pour placer les services à transmettre dans les trames, de manière que l'espace disponible dans la deuxième trame soit rendu maximal.
  13. Système selon la revendication 10, caractérisé en ce que la source de données (30, 31 ou 32) est agencée pour envoyer une requête en transmission de service à l'unité de codage (MIPE).
  14. Système selon la revendication 12 ou 13, caractérisé en ce que l'unité de codage (MIPE) optimise les trames dans un cas dans lequel la source de données (30, 31 ou 32) envoie une requête en transmission de service et que l'espace demandé par le service requis est plus grand que l'espace disponible dans les trames, telles que dans la fragmentation actuelle.
  15. Système selon la revendication 14, caractérisé en ce que l'unité de codage (MIPE) est agencée pour transmettre un message d'annulation à la source de données (30, 31 ou 32), en réponse à la requête de transmission de service, dans le cas où l'espace additionnel fourni par l'optimisation des trames est plus petit que l'espace nécessaire pour la transmission du service requis.
  16. Dispositif terminal, pour une réception d'une transmission IP ininterrompue, caractérisé en ce que le dispositif terminal comprend un récepteur (40 à 45) pour recevoir une transmission fragmentée en des trames, lesdites trames ayant été fragmentées en au moins deux trames, de manière que des paquets de données concernant le même service soient toujours logés dans la même trame, dans lequel l'une des au moins deux trames sert de pause dans la, transmission pour l'autre trame.
  17. Dispositif terminal selon la revendication 16, caractérisé en ce que le dispositif terminal est agencé pour syntoniser et mesurer une nouvelle fréquence durant la pause dans la transmission.
  18. Dispositif terminal selon la revendication 16 ou 17, caractérisé en ce que le dispositif terminal est agencé pour resyntoniser l'ancienne fréquence, dans le cas où la nouvelle fréquence mesurée est d'une moindre qualité que l'ancienne fréquence.
EP03795039A 2002-09-16 2003-09-16 Procédé et système permettant d'assurer de la réception uninterrompue d'une transmission IP dans une réception mobile Expired - Lifetime EP1540894B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
FI20021657 2002-09-16
FI20021657A FI115099B (fi) 2002-09-16 2002-09-16 IP-lähetyksen katkeamattoman vastaanoton varmistaminen liikkuvassa vastaanotossa
PCT/FI2003/000675 WO2004025906A1 (fr) 2002-09-16 2003-09-16 Procede et systeme permettant de s'assurer de la reception ininterrompue d'une transmission ip dans une reception mobile

Publications (2)

Publication Number Publication Date
EP1540894A1 EP1540894A1 (fr) 2005-06-15
EP1540894B1 true EP1540894B1 (fr) 2010-09-29

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EP03795039A Expired - Lifetime EP1540894B1 (fr) 2002-09-16 2003-09-16 Procédé et système permettant d'assurer de la réception uninterrompue d'une transmission IP dans une réception mobile

Country Status (6)

Country Link
EP (1) EP1540894B1 (fr)
AT (1) ATE483291T1 (fr)
AU (1) AU2003264326A1 (fr)
DE (1) DE60334389D1 (fr)
FI (1) FI115099B (fr)
WO (1) WO2004025906A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7689236B2 (en) 2005-03-17 2010-03-30 Nokia Corporation Media device and method of enhancing use of media device
AU2007212604A1 (en) 2006-02-03 2007-08-16 Interdigital Technology Corporation Method and apparatus for dynamically configuring a hybrid automatic repeat request memory

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW306102B (fr) * 1993-06-14 1997-05-21 Ericsson Telefon Ab L M
SE514049C2 (sv) * 1999-03-24 2000-12-18 Teracom Ab Metod för testmottagning av alternativa mottagningsfrekvenser
EP1073224A3 (fr) * 1999-05-07 2002-08-14 Sony International (Europe) GmbH Stratégie pour la commutation vers des fréquences alternatives pour la DRM
FI112562B (fi) * 2000-02-29 2003-12-15 Nokia Corp Mittausaukkojen määrittäminen keskinäistaajuksien mittauksessa
US6865167B2 (en) * 2001-02-02 2005-03-08 Telcordia Technologies, Inc. Method and system for soft handoff in wireless code division multiple access (CDMA) internet protocol (IP) networks

Also Published As

Publication number Publication date
FI20021657A0 (fi) 2002-09-16
EP1540894A1 (fr) 2005-06-15
FI20021657A (fi) 2004-03-17
ATE483291T1 (de) 2010-10-15
WO2004025906A1 (fr) 2004-03-25
DE60334389D1 (de) 2010-11-11
FI115099B (fi) 2005-02-28
AU2003264326A1 (en) 2004-04-30

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