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:
Systems and methods for managing virtual collaboration systems are disclosed herein. A virtual collaboration system includes a distributor communicatively coupled to a first network and a second network having different network characteristics from the first network, the distributor configured to receive first media streams from at least one first network node, and to transmit the first media streams to at least one second network node; and a management subsystem adapted to dynamically configure a topology of a virtual collaborative event, wherein configuration of the topology includes a determination of media stream connections among the distributor and the at least one first network node based, at least in part, on at least one policy, and wherein the media stream connections establish and maintain virtual relationships among the at least one first network node and the at least one second network node.
Abstract:
A system includes a communication network, a plurality of nodes communicatively coupled to the communication network, a gateway subsystem communicatively coupled to the communication network, and a management subsystem communicatively coupled to the gateway subsystem. The gateway subsystem is configured to receive and translate signals from the plurality of nodes for use by the management subsystem. Further, the management subsystem is configured to dynamically manage the topology of a virtual collaborative event based on the node signals.
Abstract:
Systems, methodologies, and media associated with videoconferencing are described. One example system includes video display devices and audio output devices to output video and related audio received from a remote videoconferencing location(s). The example system includes a distribution logic to selectively route audio data to an audio output device(s) and to selectively route video data to a video display device(s). The routing may be based, at least in part, on a relationship between an audio source and a video source. The result of the routing is to cause audio outputs to be acoustically associated with related video outputs so that different audio and video outputs will be spatially distinguishable and so that audio is attributable to related video.
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:
A fluid ejecting device with a body defining an array of nozzles. The nozzles are arranged in an array along an array axis. The array has a first portion in which the nozzles are spaced apart along the array axis by a first pitch, and a second portion in which the nozzles are spaced apart by a different second pitch. The array may have a third portion between the first and second portions with a third pitch different from the first and second pitch. An assembly may include two or more of such fluid ejection devices, and the second portion of one print head may be aligned with the first portion of the other print head. Printers incorporating the fluid ejection devices and printing methods are also disclosed.