Abstract:
A method is described for aligning video streams and positioning camera in a collaboration event to create a blended space. A local physical environment of one set of attendees is combined with respective apparent spaces of other sets of attendees that are transmitted from two or more remote environments. A geometrically consistent shared space is created that maintains natural collaboration cues of eye contact and directional awareness. The remote environments in the local physical environment are represented in a fashion that is geometrically consistent with the local physical environment. The local physical environment extends naturally and consistently with the way the remote environments may be similarly extended with their own blended spaces. Therefore, an apparent shared space that is sufficiently similar for all sets of attendees is presented in both the local and remote physical environments.
Abstract:
A method of displaying an image includes receiving image data for the image, buffering the image data for the image, including creating a frame of the image, defining a first sub-frame and at least a second sub-frame for the frame of the image from the image data, the second sub-frame being spatially offset from the first sub-frame, and alternating between displaying the first sub-frame in a first position and displaying the second sub-frame in a second position spatially offset from the first position.
Abstract:
A technique includes configuring a monitor to be longitudinally translated along a work surface and pivoted about an axis that is substantially parallel to a normal of the work surface.
Abstract:
A videoconference environment includes a back wall and a video camera facing toward the back wall. The video camera is set to have a field-of-view that includes a portion of the back wall while excluding a peripheral edge of the back wall.
Abstract:
Telepresence display configuration useful for video conferencing. The telepresence display configurations include a video display and a mat. The mat is spaced apart from the video display and has an opening having an inner perimeter configured to frame a viewing surface of a video display.
Abstract:
A video conference system includes a first video conference environment, and a second video conference environment linked to the first video conference environment. Each video conference environment has a conference view direction and a reference view direction, the reference view directions being symmetrically oriented with respect to the conference view directions.
Abstract:
An event management system is configured to receive information that indicates a presence of an attendee of a collaboration event at a first location that is not specified by a registered event specification corresponding to the collaboration event and provide information to the attendee to direct the attendee to a second location with an endpoint for connecting to the collaboration event.
Abstract:
A method of videoconferencing includes arranging a portable environment to include a first wall generally parallel to and spaced from a second wall and facing a videocamera on the first wall toward the second wall. An on-camera subject zone is implemented between the first wall and the second wall via: (1) setting a field-of-view of the videocamera to include the second wall while excluding a peripheral edge of the second wall; and (2) positioning a subject station between the first wall and the second wall and setting the on-camera subject zone within a boundary defined by the field-of-view of the videocamera extending from the subject station to the second wall.
Abstract:
Cameras are adjusted by setting magnifications of two or more cameras to be substantially equal, focusing the two or more cameras, and setting the two or more cameras so that portions of an object captured thereby when displayed are aligned.
Abstract:
A method of creating a synthetic bridge (100) has select data (406) logically extracted from an application layer of a first network (12A) which contains one or more first data streams to be transported to a second network (12B). Select data (406) is logically extracted from an application layer of the second network (12B). Select data (406) is logically extracted from an application layer of the second network (12B) which contains one or more second data streams to be transported to the first network (12A). The two or more first and second data streams are transported over separate sets of non-network media link interfaces (130-133) that only allow for limited information encoding and inherently prevent any network protocol information from being passed with the two or more first and second data streams until after the two or more first and second data streams are in the control of the opposite network from which they were transported.