Abstract:
A method and portable terminal for providing a video communication service are disclosed, in which video and audio data transmitted or received during video communication are recorded and the video and audio data are stored into files by the portable terminal, the files are merged; and the merged files are played. The portable terminal can store images and voices of both users during video communication by successively storing video and audio data, which are transmitted or received, in response to a user's key input and merging the video and audio data into a single file.
Abstract:
When a line for communication of audio signals between first and second portable-telephone devices through a first portable-telephone base station, a second portable-telephone base station and a portable-telephone line network has been connected, IP addresses are exchanged. The IP addresses are required for communicating image data by first and second terminal adapters associated with the first and second portable-telephone devices respectively through an OCN. Image data is then transmitted to the IP addresses received in the communication through the OCN. To put it concretely, an image of the user of the first portable-telephone device is transmitted by the first terminal adapter through the OCN to the IP address of the second terminal adapter to be displayed by a second television receiver associated with the second terminal adapter. By the same token, an image of the user of the second portable-telephone device is transmitted by the second terminal adapter through the OCN to the IP address of the first terminal adapter to be displayed by a first television receiver associated with the first terminal adapter. Thus, by merely taking a portable-telephone device to a place like a store selling home electrical appliances including a television.
Abstract:
In a communication of audio signals between first and second portable-telephone devices through a first portable-telephone base station, a second portable-telephone base station and a portable-telephone line network has been connected, IP addresses are exchanged. The IP addresses are required for communicating image data by first and second terminal adapters associated with the first and second portable-telephone devices respectively through an OCN. Image data is then transmitted to the IP addresses received in the communication through the OCN.
Abstract:
A mobile communication device includes video communication capability. When the video call is place on hold by the mobile communication device, a pre-recorded video is transmitted to the holding party. The pre-recorded video may be stored in the memory of the mobile communication device or may be stored in a video server in the network. In the latter case, the mobile communication device signals the video server to transmit a selected video to the holding party when the video call is placed on hold.
Abstract:
A sending conversant uses a sending communication device to transmit voice and body state information over a communication network to a receiving communication device used by a receiving conversant. Model based rendering is used such that the model is transferred from the sending conversant to the receiving conversant along with the transmitted data. The sending device includes means for sensing the body state of the sending conversant, collected as body state measurements. The sending communication device also includes means for detecting speech uttered by the sending conversant, such as an audio microphone. The detected speech and body state measurements are encoded in a temporally synchronized manner and multiplexed into a communication signal which is transmitted to the receiving device.
Abstract:
One or more video server components of an apparatus that play one or more videos at one or more mobile phones while one or more phone calls associated with the one or more mobile phones are on hold.
Abstract:
A method for verifying a purported location of a wide area network user is disclosed. The method comprises the steps of receiving information from a user via a wide area network, including a purported geographical location of the network user. A first network address from which the information is received is recorded, and an access code is generated and recorded. The access code is broadcast in a defined region that includes the purported geographical location of the user. A user access code is then received via the wide area network from the user. The user access code is compared with the access code broadcast in a defined region, and the first network address is compared to a second network address from which the user access code is received. If the codes and addresses match, the geographical location of the user is considered verified and the user may be validated. Various methods for broadcasting the access code and various systems for implementing the method are disclosed.
Abstract:
The user interface to a video based telecommunications system is enriched by the provision of multi-media user interfaces. The user interface may include active video portions along with instructional audio or may be icons or thumbnails representing available video information. Menu structures can be animated by changing the color or characteristics of the menu items in synchronization with the audio information and responsive to actions taken by the user.
Abstract:
A video distribution system is provided that is capable of distributing the same advertisement both to an originating user terminal and to a destination user terminal. Upon receipt of http request, WWW server transmits a call processing and video distribution request to a coordination server. At this time, the telephone numbers of the originating user terminal and the destination user terminal, and video to be distributed are specified by the call processing and video distribution request. Upon receipt of the call processing and video distribution request, coordination server performs originating call control and sets up a video distribution using a call processing protocol such as SIP. This results in setting up a telephone conversation between the originating user terminal and the destination user terminal, and setting video distribution to and receipt by destination user terminal. Coordination server then transmits an originating-side video distribution request to the video distribution server. Upon receipt of the originating-side video distribution request, the video distribution server performs video distribution to the originating user terminal.
Abstract:
A sign language interpretation system has a function to interconnect a deaf-mute person terminal, a non-deaf-mute person terminal, and a sign language interpreter terminal, and a function to synthesize a video/audio signal received from each terminal and to transmit a synthesized signal to each terminal in order to provide a videophone conversation service via sign language interpretation between the deaf-mute person and the non-deaf-mute person. A controller includes a sign language interpreter registration table in which the selection information and terminal number of a sign language interpreter as well as an availability flag are registered. An available sign language interpreter satisfying the selection conditions specified by a caller is selected by way of a call from the deaf-mute person or non-deaf-mute person. The terminal for sign language interpreters and the calling terminal are called and automatically interconnected.