Nova Patents
EP1628480A2

Telecommunications system

Abstract

A videophone (15). The videophone (15) can include an imaging mechanism (30) for taking a video picture of a scene. The videophone (15) can include a mechanism (36, 38, 42) for producing a first video stream of the scene and a second video stream of the scene from the video picture and sending the first video stream and the second video stream onto a network (40) at the same time, the producing mechanism (36, 38, 42) in communication with the imaging mechanism (30). The videophone (15) can include a mechanism (42) for receiving a plurality of video streams of different scenes from a network (40). The videophone (15) can include a mechanism (52, 54) for displaying the different scenes of the plurality of video streams alongside each other. A method for a video call.

EP1628480A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 27 March 2023, 3.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

94 claims: 94 independent, 0 dependent

  1. 1
    A videophone (15) characterized by:means (42) for receiving a plurality of video streams of different scenes from a network (40);andmeans (52, 54) for displaying the different scenes of the plurality of video streams at predetermined areas of various size at the same time, the displaying means in communication with the receiving means.
  2. 2
    A method for a video call characterized by the steps of:receiving a plurality of video streams of different scenes from a network (40);anddisplaying the different scenes of the plurality of video streams at predetermined areas of various size at the same time.
  3. 3
    A telecommunications system (10) characterized by:a network (40);anda first node (80), a second node (82), and at least a third node (84) in communication with each other through the network (40), the first node (80) arranged to send a first video stream of a scene at the first node (80), a second video stream of the scene at the first node (80) and an audio stream of the scene at the first node (80) to the second and third nodes (82, 84), the second and third nodes (82, 84) arranged to play the audio stream and either the first video stream or the second video stream.
  4. 4
    A system (10) as described in Claim 3 characterized by the fact that the first video stream has a frame rate greater than or equal to (25) frames per second and the second video stream has a frame rate less than (25) frames per second.
  5. 5
    A system (10) as described in Claims 3 to 4 characterized by the fact that the second and third nodes (82, 84) have a display screen (54) and in which the second or third nodes are arranged to display the first video stream as a large image across an area of greater than or equal to 20% of the screen (54), and to display the second video stream as a small image across an area of less than 20% of the screen (54).
  6. 6
    A system (10) as described in Claims 3 to 5 characterized by a fourth node in communication with the first, second and third nodes (80, 82, 84) through the network (40), arranged to send a television video stream of a television channel to the first, second and third nodes (80, 82, 84);the first, second and third nodes (80, 82, 84) able to display the television video stream on the screen (54) along side the first video stream.
  7. 7
    A system (10) as described in Claims 3 to 6 characterized by the fact that the second node (82) is arranged to send a first video stream of a scene at the second node (82), a second video stream of the scene at the second node (82) and an audio stream of the scene to the third node (84);and wherein the third node (84) comprises a display controller (52) which for controlling the image that appears on the screen (54) and for playing each first video stream from each node alongside each other on the screen (54) of the third node (84).
  8. 8
    A system (10) as described in Claims 3 to 7 characterized by the fact that the network (40) is an Ethernet or ATM network (40).
  9. 9
    A system (10) as described in Claims 3 to 8 comprising means for sending the first and second video streams and the audio streams of the first and second nodes (80, 82) over the network (40) for a video conference call, with no conferencing bridge or MCU used for the video conference call.
  10. 10
    A system (10) as described in Claims 3 to 9 characterized by the fact that each stream for the video conference call node comprises ATM point to multipoint.
  11. 11
    A system (10) as described in Claims 3 to 10 characterized by the fact that the third node (84) is arranged to predetermine which of the first or second video streams from the first or second nodes (80, 82) to display.
  12. 12
    A system (10) as described in Claims 3 to 11 characterized by the fact that the third node (84) arranged to choose to display the first video stream from the first or second nodes (80, 82) if a user in the respective scene at the first or second nodes (80, 82) is talking, or the third node (84) has predetermined to display the first video stream of the first or second nodes (80, 82).
  13. 13
    A system (10) as described in Claims 3 to 12 characterized by the fact that the first video stream of the first arid second nodes (80, 82) is in MPEG-2 format when it is sent over the network (40).
  14. 14
    A system (10) as described in Claims 3 to 13 characterized by the fact that the first and second nodes (80, 82) are arranged to use continuous P to place the first video stream of the first and second nodes (80, 82) in the MPEG-2 format.
  15. 15
    A system (10) as described in Claims 3 to 14 characterized by the fact that the first and second nodes (80, 82) are arranged to clip the first video streams of the scene of the first and second nodes, (80, 82) respectively.
  16. 16
    A system (10) as described in Claims 3 to 15 characterized by the fact that the first and second nodes (80, 82) are arranged to clip the first video stream of their respective scenes by removing a portion of the first video stream that is associated with a location of the respective scene that has no user.
  17. 17
    A system (10) as described in Claims 3 to 16 characterized by the fact that the first and second nodes (80, 82) are arranged to only send an audio stream of the scene of the first and second nodes (80, 82), respectively, if there is a noise above a predetermined threshold at the respective scene.
  18. 18
    A system (10) as described in Claims 3 to 17 characterized by the fact that the first node (80) comprises an automatic presence sensor (76) for determining whether a user is present at the scene at the first node (80), and for producing a presence indicator (79) of whether the user is at the first node (80), and the first node (80) comprises means for send the presence indicator (79) to the second and third nodes (82, 84).
  19. 19
    A system (10) as described in Claims 3 to 18 characterized by the fact that the first node (80) is arranged to produce an alert signal to alert any user in the scene at the first node (80) that the presence indicator (79) is going to be formed in a predetermined time.
  20. 20
    A system (10) as described in Claims 3 to 19 characterized by the fact that the first node (80) comprises an imaging means (30) for taking a video picture of the first scene and producing the first video stream.
  21. 21
    A system (10) as described in Claims 3 to 20 characterized by an encoder 36 in communication with the imaging means (30) for compressing and encoding the first video stream into a desired format without frame buffering.
  22. 22
    A system (10) as described in Claims 3 to 21 characterized by the fact that the first node (80) includes a Field Programmable Gate Array (38) in communication with the encoder (36), which is arranged to packetize the first video stream, and also receive the first video stream from the imaging means (30) and produce the second video stream of the first node (80) and packetize the second video stream.
  23. 23
    A system (10) as described in Claims 3 to 22 characterized by the fact that the first node (80) includes a network interface (42) in communication with the Field Programmable Gate Array (38) and the network (40) and is arranged to transfer the first video stream of the first node (80) to the network (40), and receive the first video stream from the second node (82) and send it to the Field Programmable Gate Array (38).
  24. 24
    A system (10) as described in Claims 3 to 23 characterized by the fact that the first node (80) includes microphone means (58, 60, 62) for receiving sound from the first scene and producing the audio stream of the first node (80).
  25. 25
    A system (10) as described in Claims 3 to 24 characterized by the fact that the first node (80) includes speaker means (64) in communication with the network interface (42) for playing the audio stream from the second node (82).
  26. 26
    A system (10) as described in Claims 3 to 25 characterized by the fact that the first node (80) includes a DSP (62) which is arranged to packetize the audio stream of the first node (80) and provide the audio stream to the Field Programmable Gate Array (38) which is arranged to transfer the audio stream of the first node (80) to the network interface (42) which is arranged to transfer the audio stream of the first node (80) to the network (40), and receive the audio stream of the second node (82) from the Field Programmable Gate Array (38).
  27. 27
    A system (10) as described in Claims 3 to 26 characterized by the fact that the first node (80) includes an audio interface (60) which is arranged to receive the audio stream of the first node (80) from the microphone means (58, 60, 62) and digitize it and provide it to the DSP (62), and convert the audio stream from the second node (82) that it receives from the DSP (62) to an analog form for the speaker means (64) to play.
  28. 28
    A system (10) as described in Claims 3 to 27 characterized by the fact that the network interface (42) is arranged to time stamp packets of the audio stream and the video stream of the first node (80) before they are sent to the network (40), and align the packets of the video stream and audio stream of the second node (82) that the first node (80) receives by time stamp so when the video stream and audio stream of the second node (82) are played by the first node (80), the associated sound with the image of the scene of the second node (82) is played.
  29. 29
    A system (10) as described in Claims 3 to 28 characterized by the fact that the first node (80) includes a receive memory in which the first video stream from the second node (82) is received and stored, and a main controller (50) connected to the network interface (42), the encoder (36), the Field Programmable Gate Array (38) and the DSP (62) to control them, the main controller (50) arranged to instruct the network interface (42) to choose the first video stream of the second node (82) and send it to the receive memory, the main controller (50) arranged to decode and expand the first video stream of the second node (82) stored in the receive memory and send it to the display controller (52).
  30. 30
    A system (10) as described in Claims 3 to 29 characterized by the fact that the first node (80) includes an LCD controller (72) connected to the display controller (52), and the display screen 54 includes a panel display connected to the LCD controller (72), the LCD controller (72) is arranged to receive the first video stream of the second node (82) from the display controller (52) and prepare the first video stream of the second node (82) for display on the panel.
  31. 31
    A system (10) as described in Claims 3 to 30 characterized by a touch screen (74) on which buttons associated with functions appear, and a touch screen controller connected to the touch screen (74) and the main controller (50) for transferring information regarding buttons which have been touched on the touch screen (74) by a user to the main controller (50).
  32. 32
    A system (10) as described in Claims 3 to 31 characterized by the fact that the first node (80) includes a decoder (34) for converting the first video stream from the imaging means of the scene of the first node (80) to digital form and providing it to the encoder (36) and the Field Programmable Gate Array (38), the decoder (34) connected to the Field Programmable Gate Array (38) and the encoder (36), the decoder (34) also for receiving the television video stream and other analog form video streams and converting them to digital form.
  33. 33
    A system (10) as described in Claims 3 to 32 characterized by the fact that the imaging means includes an analog video camera (32) which is in communication with the decoder (34), a digital video camera (47) which is in communication with the encoder (36) and the Field Programmable Gate Array (38), or a fire wire camera (48) in communication with the Field Programmable Gate Array (38), the Field Programmable Gate Array (38) for providing any video stream it receives from the fire wire camera (48) to the encoder (36).
  34. 34
    A system (10) as described in Claims 3 to 33 characterized by the fact that the DSP (62) is arranged to provide for stereo echo cancellation of the audio stream of the scene of the first node (80), the encoder (36) is arranged to provide for the first video stream of the first node (80) to have a resolution of at least 720 by 640 pixels, and the microphone means and the speaker means are full duplex.
  35. 35
    A system (10) as described in Claims 3 to 34 characterized by the fact that the DSP (62) is arranged to monitor the microphone means (58, 60, 62) for the noise level produced by the speaker means (64) and adjust the speaker means to maintain a desired noise level.
  36. 36
    A system (10) as described in Claims 3 to 35;characterized by the fact that the main controller (50) is arranged to recognize a command by the user to automatically call another user for a video conference, and use the command to announce to the other users that the other user is being requested for the video conference.
  37. 37
    A system (10) as described in Claims 3 to 36 characterized by the fact that the first node (80) has video mail when the first node (80) is not able to accept a video call.
  38. 38
    A system (10) as described in Claims 3 to 37 characterized by a server (66) that is arranged to be in communication with the network (40) and the first node (80), which is arranged to receive the video call for the first node (80) when the first node (80) does not receive the video call, store a video message associated with the video call that the first node (80) does not receive, and send a video call waiting message to the first node (80) that there is a video message waiting to be shown to the first node (80).
  39. 39
    A system (10) as described in Claims 3 to 38 characterized by the fact that the first node (80) has a plurality of display screens (54) connected to the display controller (52), with the images of the first video streams from different nodes being displayed on the screens (54) alongside each other as though the plurality of screens (54) is one continuous screen (54).
  40. 40
    A system (10) as described in Claims 3 to 39 characterized by the fact that the first node (80) includes a second imaging means for producing the first video stream of the first node (80) having a different view of the scene at the first node (80) than the imaging means.
  41. 41
    A system (10) as described in Claims 3 to 40 characterized by the fact that the main controller (50) is arranged to send the second video stream of the first node (80) from the Field Programmable Gate Array (38) to the display controller (52) to be displayed on the screen (54) so the user of the first node (80) can see the scene of the first node (80) on the display screen (54).
  42. 42
    A videophone (15) characterized by:an imaging means (30) for taking a video picture of a scene;andmeans (36, 38, 42) for producing a first video stream of the scene and a second video stream of the scene from the video picture and sending the first video stream and the second video stream onto a network (40) at the same time, the producing means (36, 38, 42) in communication with the imaging means.
  43. 43
    A method for a video call characterized by the steps of:taking a video picture of a scene;producing a first video stream of the scene and a second video stream of the scene from the video picture;andsending the first video stream and the second video stream onto a network (40) at the same time.
  44. 44
    A videophone (15) characterized by:means (42) for receiving a plurality of video streams of different scenes from a network (40);andmeans (52, 54) for displaying the different scenes of the plurality of video streams alongside each other, the receiving means in communication with the displaying means.
  45. 45
    A videophone (15) characterized by:means (42, 34) for receiving a plurality of video streams of different scenes from a network (40) including at least one video stream of a television channel;andmeans (52, 54) for displaying at least one of the scenes of the plurality of video streams next to the television channel, the displaying means in communication with the receiving means.
  46. 46
    A method for a video call characterized by the steps of:receiving a plurality of video streams of different scenes from a network (40) including at least one video stream of a television channel;anddisplaying at least one of the scenes of the plurality of video streams next to the television channel.
  47. 47
    A videophone (15) characterized by:imaging means (30) for taking a video picture of a scene;andmeans (36, 38, 42) for producing a video stream of the scene from the video picture and sending the video stream of the scene on a network (40) to a plurality of destinations at the same time without using a conferencing bridge or MCU, the producing means in communication with the imaging means.
  48. 48
    A method for a video call characterized by the steps of:taking a video picture of a scene;producing a video stream of the scene from the video picture;andsending the video stream of the scene on a network (40) to a plurality of destinations at the same time without using a conferencing bridge or MCU.
  49. 49
    A videophone (15) characterized by:an imaging means (30) for taking a video picture of a scene;andmeans (36, 38, 42) for producing a video stream of the scene from the video picture using continuous P and sending the video stream onto a network (40), the producing means (36, 38, 42) in communication with the imaging means (30).
  50. 50
    A method for a video call characterized by the steps of:taking a video picture of a scene;andproducing,a video stream of the scene from the video picture using continuous P and sending the video stream onto a network (40).
  51. 51
    A videophone (15) characterized by:an imaging means (30) for taking a video picture of a scene;andmeans (50, 36, 38, 42) for producing a video stream of the scene from the video picture, clipping areas of the scene where there is no user of the videophone (15) and sending the video stream onto a network (40), the producing means (50, 36, 38, 42) in communication with the imaging means (30).
  52. 52
    A method for a video call characterized by the steps of:taking a video picture of a scene;producing a video stream of the scene from the video picture;clipping areas of the scene where there is no user of the videophone (15);andsending the video stream onto a network (40).
  53. 53
    A videophone (15) characterized by:an imaging means (30) for taking a video picture of a scene;andmeans (36, 38, 50, 62) for producing a video stream of the scene from the video picture and an audio stream of the scene, and sending the video stream onto a network (40) and the audio stream, only if there is noise above a predetermined threshold at the scene, onto the network (40), the producing means (36, 38, 50, 62) in communication with the imaging means (30).
  54. 54
    A method for a video call characterized by the steps of:taking a video picture of a scene;producing a video stream of the scene from the video picture and an audio stream of the scene;andsending the video stream onto a network (40) and the audio stream, only if there is noise above a predetermined threshold at the scene, onto the network (40).
  55. 55
    A videophone (15) characterized by:an imaging means (30) for taking a video picture of a scene;andmeans (36, 38, 42) for producing a video stream of the scene from the video picture and sending the video stream onto a network (40) without frame buffering of the video stream except for packetization purposes, the producing means in communication with the imaging means.
  56. 56
    A method for a video call characterized by the steps of:taking a video picture of a scene;andproducing a video stream of the scene from the video picture and sending the video stream onto a network (40) without frame buffering of the video stream except for packetization purposes.
  57. 57
    A presence sensor (76) for a network (40) characterized by:means for determining whether a person is present in a scene;andmeans (38, 42) for producing a presence indicator (79) of whether a person is in the scene and sending the presence indicator (79) to the network (40), the determining means is in communication with the producing means (38, 42).
  58. 58
    A sensor as described in Claim 57 characterized by means for alerting the person in the scene that the presence indicator (79) is going to be produced in a predetermined time.
  59. 59
    A method for sensing presence for a network (40) characterized by the steps of:determining whether a person is present in a scene;producing a presence indicator (79) of whether the person is in the scene;andsending the presence indicator (79) to the network (40).
  60. 60
    A method as described in Claim 59 characterized by the step of alerting the person in the scene that the presence indicator (79) is going to be produced in a predetermined time.
  61. 61
    A page (78) for a touch screen (74) to make a video call characterized by:a list (77) of contacts and their associated SIP address or phone numbers;anda button associated with each contact which when touched, places a call to the videophones (15) at which the contact is currently logged on or to a phone number associated with the button.
  62. 62
    A page (78) as described in Claim 61 characterized by a presence indicator (79) associated with each phone number identifying whether a person is present.
  63. 63
    A method for making a video call characterized by:touching a button on a page (78) of a touch screen (74) associated with a phone number of a videophone (15);andplacing the video call to the videophone (15) at the phone number associated with the button.
  64. 64
    A method as described in Claim 63 characterized by the step of displaying a presence indicator (79) associated with each phone number of the videophone (15) identifying whether a person is present at the associated videophone (15) of the phone number.
  65. 65
    A method for communicating with a person characterized by the steps of:calling a phone number for a videophone (15) of the person;andleaving a video message with the videophone (15) when prompted by the videophone (15).
  66. 66
    A videophone (15) characterized by:means (66) for prompting a video caller to leave a video message;andmeans (58, 60, 64) for saving the video message until it is desired to be seen.
  67. 67
    A videophone (15) characterized by:means (30, 36, 38, 42) for producing a video stream of a scene having a resolution of at least 640 X 480 pixels, a delay of less than 100 ms and a frame rate of at least (25) frames per second;andmeans (58, 60, 62) for producing an audio stream of the scene that is full duplex and is subject to stereo echo cancellation.
  68. 68
    A method for communicating with a person characterized by the steps of:producing a video stream of a scene having a resolution of at least 640 X 4(80) pixels, a delay of less than 100 ms and a frame rate of at least (25) frames per second;producing an audio stream of the scene that is full duplex and is subject to stereo echo cancellation;andsending the video stream and audio stream to a videophone (15) of the person.
  69. 69
    A videophone (15) characterized by:a display screen (54) for displaying a video stream received from a network (40);microphone means (58, 60) for receiving sound from a scene;speaker means (64) for playing an audio stream received from the network (40) into the scene;andmeans (50, 62) for monitoring noise produced by the speaker means into the scene and adjusting the speaker means to maintain a desired level of noise produced by the speaker means, the monitoring means in communication with the speaker means and the microphone means.
  70. 70
    A method for operating a videophone (15) characterized by the steps of:displaying a video stream received from a network (40) on a display (54) screen;receiving sound from a scene by microphone means;playing an audio stream received from the network (40) with speaker means into the scene;andmonitoring noise produced by the speaker means into the scene and adjusting the speaker means to maintain a desired level of noise produced by the speaker means.
  71. 71
    A videophone (15) characterized by:means (58, 60, 62) for recognizing a spoken command to make a video call to a destination;andmeans (38, 42, 50) for making the video call and using the spoken command to announce the video call at the destination.
  72. 72
    A method for making a video call characterized by the steps of:recognizing a spoken command to make a video call to a destination by a videophone (15);andmaking the video call with the videophone (15) and using the spoken command to announce the video call at the destination.
  73. 73
    A videophone (15) characterized by:a plurality of individual display screens (54);andmeans (42, 50, 52) for displaying different scenes of a plurality of video streams received from a network (40) at the same time on the plurality of screens as though the plurality of screens (54) is one continuous screen, the displaying means (42, 50, 52) in communication with the plurality of display screens (54).
  74. 74
    A method for having a video call characterized by the steps of:receiving a plurality of video streams of different scenes;anddisplaying the different scenes of the plurality of video streams on a plurality of display (54) screens at the same time that are connected together as though the plurality of screens is one continuous screen.
  75. 75
    A videophone (15) characterized by:first imaging means (30) for taking a video picture of a scene;second imaging means (30) for taking a different video picture of the scene than the first imaging means;andmeans (36, 38, 42, 50) for producing a video stream of the scene from either the video picture taken by the first imaging means (30) or the second imaging means (30) and sending the video stream onto a network (40), the producing means (36, 38, 42, 50) in communication with the first imaging means (30) or second imaging means (30).
  76. 76
    A method for a video call characterized by the steps of:taking a video picture of a scene with a first imaging means;taking a video picture of the scene with a second imaging means;andproducing a video stream of the scene from the video picture of either the first imaging means or the second imaging means and sending the video stream onto a network (40).
  77. 77
    An apparatus (93) for conferencing characterized by:means (38, 42, 62) for receiving from a network (40) N audio streams associated with noise from different locations, where N is an integer greater than or equal to 3;means (62) for choosing M of the audio streams from the N audio streams, where M is an integer less than or equal to N;andmeans (62) for mixing and playing the M audio streams.
  78. 78
    An apparatus (93) as described in Claim 77 characterized by the receiving means being arranged to receive P video streams associated with pictures from the different locations, where P is greater than or equal to 3 and is an integer, and the choosing means is arranged to choose S of the video streams, where S is an integer less than P from the P video streams;and including means for playing the S video streams.
  79. 79
    An apparatus (93) as described in Claim 77 to 78 characterized by means (38, 42, 62) for sending a local audio stream to the network (40) if the local audio stream has noise above a threshold.
  80. 80
    An apparatus (93) as described in Claim 77 to 79 characterized by the fact that the threshold is dynamic, and including means (62) for determining the threshold based on noise level of the M audio streams chosen by the choosing means.
  81. 81
    An apparatus (93) as described in Claim 77 to 80 characterized by the determining means being arranged to determine the threshold based on thresholds received from M of the different locations associated with the M audio streams.
  82. 82
    A system (10) for conferencing characterized by:a network (40);andN nodes (80, 82, 84) connected to each other through the network (40), where N is greater than or equal to 3 and is an integer, each node for sending an audio stream to the network (40) if there is noise above a threshold at the respective node, each node comprising play means for playing M of the audio streams from the N nodes, where M is less than N and is an integer, each node for determining its respective threshold at a given time based on noise level of the M audio streams played at the given time at the node, the threshold being dynamic, and determined independently and distributed among the N nodes, with each node comprising play means for playing a different combination of M audio streams.
  83. 83
    A method for conferencing characterized by the steps of:receiving from a network (40) N audio streams associated with noise from different locations, where N is an integer greater than or equal to 3;choosing M of the audio streams from the N audio streams, where M is an integer less than or equal to N;andmixing and playing the M audio streams.
  84. 84
    An apparatus (93) for conferencing characterized by:means (38, 42, 62) for sending an audio stream to a network 40 if the audio stream has noise above a threshold at a given time;andmeans (62) for dynamically determining the threshold as a function of noise of a plurality of received audio streams from the network (40) at the given time.
  85. 85
    A method for conferencing characterized by the steps of:determining dynamically a threshold for sending an audio stream to a network (40) as a function of noise of a plurality of received audio streams from the network (40);andsending the audio stream to the network (40) if the audio stream has noise above the threshold.
  86. 86
    A telecommunications apparatus 93 characterized by:means (42) for communicating with at least a first network (88);andmeans (42, 50) for storing an address of a first node (80) from a packet with the address of the first node (80) received by the communicating means (42) from the first node (80) through the first network (88), and placing an address of the apparatus with a packet which will be sent from the apparatus by the communicating means (42).
  87. 87
    An apparatus as described in Claim 86 characterized by the fact that the communicating means (43) is arranged to communicate with the first network (88) and a second network (90) different from the first network (88), and the storing and placing means (42, 50) is arranged to place the address of the apparatus with the packet relative to the second network (90) onto which the packet will be sent by the communicating means (42).
  88. 88
    A telecommunications system (94) characterized by:a first network (88);an originating node (86) in communication with the first network (88) comprising means for sending a packet having an address of the originating node (86) relative to the first network (88) onto the first network (88);a second network (90) different than the first network (88);an originating gateway (81) in communication with the first network (88) and the second network (90) having an address relative to the first network (88) and an address relative to the second network (90) arranged to receive the packet from the first network (88), store the address of the originating node (86), place the address of the originating gateway (81) relative to the second network (90) with the packet and send the packet to the second network (90);anda terminating node (85) having an address relative to the second network (90) in communication with the second network (90) arranged to receive the packet, save the address of the originating gateway (81) relative to the second network (90) and send a return packet to the originating gateway (81) with the address of the terminating node 85, the originating gateway (81) arranged to receive the return packet from the terminating node (85), save the address of the terminating node (85), place the address of the originating gateway (81) relative to the first network (88) with the return packet and send the return packet onto the first network (88), the originating node (86) arranged to receive the return packet and store the address of the originating gateway (81) relative to the first address.
  89. 89
    A system (94) as described in Claim 88 characterized by the fact that the first network (88) or the second network (90) is either an Ethernet or ATM network (40).
  90. 90
    A telecommunications system (94) characterized by:a first network (88);an originating node (86) in communication with the first network (88) arranged to send a packet having an address of the originating node (86) relative to the first network (88) onto the first network (88);a second network (90) different than the first network (88);an originating gateway (81) in communication with the first network (88) and the second network (90) having an address relative to the first network (88) and an address relative to the second network (90) arranged to receive the packet from the first network (88), store the address of the originating node (86), place the address of the originating gateway (81) relative to the second network (90) with the packet and send the packet to the second network (90);a third network (92) different than the second network (90);a terminating gateway (83) in communication with the second network (90) and the third network (92) having an address relative to the third network (92) and an address relative to the second network (90) arranged to receive the packet from the second network (90), store the address of the originating gateway (81), place the address of the terminating gateway (83) relative to the third network (92) with the packet and send the packet to the third network (92);anda terminating node (85) having an address relative to the third network (92) in communication with the third network (92) arranged to receive the packet, save the address of the terminating gateway (83) relative to the third network (92) and send a return packet to the terminating gateway (83) with the address of the terminating node (85), the terminating gateway (83) arranged to receive the return packet from the terminating node (85), save the address of the terminating node (85), place the address of the terminating gateway (83) relative to the second network (90) with the return packet and send the return packet onto the second network (90), the originating gateway (81) arranged to receive the return packet from the terminating gateway (83), save the address of the terminating gateway (83), place the address of the originating gateway (81) relative to the first network (88) with the return packet and send the return packet onto the first network (88), the originating node (86) arranged to receive the return packet and store the address of the originating gateway (81) relative to the first address.
  91. 91
    A system (94) as described in Claim 90 characterized by the fact that the first network (88) and the third network (92) are a same type of network (40).
  92. 92
    A method for sending a packet from an originating node (86) to a terminating node (85) characterized by the steps of:sending a packet having an address of the originating node (86) relative to a first network (88) onto the first network (88) from the originating node (86);receiving the packet from the first network (88) at an originating gateway (81) in communication with the first network (88) and a second network (90), storing the address of the originating node (86) with the originating gateway (81) having an address relative to the first network (88) and an address relative to the second network (90), placing the address of the originating gateway (81) relative to the second network (90) with the packet, and sending the packet to the second network (90);andreceiving the packet from the second network (90) at the terminating node (85), saving the address of the originating gateway (81) relative to the second network (90), sending a return packet from the terminating node (85) to the originating gateway (81) with the address of the terminating node (85);receiving at the originating gateway (81) the return packet from the terminating node (85), saving the address of the terminating node (85) at the originating gateway (81), placing the address of the originating gateway (81) relative to the first network (88) with the return packet and sending the return packet onto the first by the originating gateway (81);andreceiving the return packet at the originating node (86) and storing the address of the originating gateway (81) relative to the first network (88) at the originating node (86), the originating gateway (81) receives the return packet from the terminating node (85), saves the address of the terminating node (85), places the address of the originating gateway (81) relative to the first network (88) with the return packet and sends the return packet onto the first network (88), the originating node (86) receives the return packet and stores the address of the originating gateway (81) relative to the first address.
  93. 93
    A method as described in Claim 92 characterized by the fact that after the receiving the return packet step, there is the step of sending a second packet from the originating node (86) to the terminating node (85) through the originating gateway (81) using the respective address stored in the originating node (86) and the originating gateway (81) for the originating gateway (81) and the terminating node (85), respectively.
  94. 94
    A system (10) as described in Claim 1 to 39 characterized by the fact that the first video stream has a bit rate greater than or equal to 1.5 Mbits per second and the second video stream has a bit rate less than 1.5 Mbits per second.
Independent claims94