Abstract:
Embodiments disclosed herein provide systems, methods, and computer readable media for steering a camera and enhancing audio captured by microphones at unspecified positions. In a particular embodiment, a method provides receiving audio captured by the plurality of microphones at a location and receiving video captured of a scene that includes the plurality of microphones captured by a first camera at a first camera position. The method further provides identifying the plurality of microphones in the scene and determining physical positions of the plurality of microphones at the location relative to the first camera position. The method then provides adjusting the audio based on the physical positions of the plurality of microphones.
Abstract:
A video-enabled communication system that includes a processor, coupled with a camera, the camera acquiring an image of an object of interest during a video communication session and a computer readable medium, coupled with the processor, comprising instructions that cause the processor to select a reflected image of the object of interest for use in providing image information to a remote endpoint for display to another participant, wherein the reflected image is a reflection of the object of interest in a mirror having a line-of-sight to the camera.
Abstract:
A communication system includes a processor and a computer readable medium, coupled with the processor, comprising instructions that program the processor to: cause an electromagnetic emitter to irradiate a location on a selected object in proximity to a speaker; determine, from radiation reflected by the selected object at the irradiated location, an audio characteristic of the irradiated location; and when the audio characteristic is acceptable, assigning an electromagnetic microphone to collect audio information from radiation reflected by the selected object at the irradiated location.
Abstract:
Embodiments disclosed herein provide systems and methods for acoustically transferring information between systems. In a particular embodiment, a method provides identifying information for acoustic transfer and determining an amount of time corresponding to the information. The method further provides acoustically transmitting a signal at a first time and, upon the amount of time elapsing since the first time, acoustically transmitting the signal at a second time.
Abstract:
Embodiments disclosed herein provide methods, systems, and computer readable storage media for facilitating enhanced visual communication between remote participants. In a particular embodiment, a method provides, during a conference session, receiving first video captured of a first participant remote to a physical meeting location. The method further provides determining a first position for the first participant in the physical meeting location and determining a view of an Augmented Reality (AR) head mounted display worn by a second participant at the physical meeting location. From the first video, the method provides generating AR video that makes the first participant appear to the second participant at the first position when viewed through the AR head mounted display. The method also includes transferring the AR video to the AR head mounted display for presentation to the second participant.
Abstract:
Embodiments disclosed herein provide systems and methods for acoustically transferring information between systems. In a particular embodiment, a method provides identifying information for acoustic transfer and determining an amount of time corresponding to the information. The method further provides acoustically transmitting a signal at a first time and, upon the amount of time elapsing since the first time, acoustically transmitting the signal at a second time.
Abstract:
Embodiments disclosed herein provide methods, systems, and computer readable storage media for facilitating enhanced visual communication between remote participants. In a particular embodiment, a method provides, during a conference session, receiving first video captured of a first participant remote to a physical meeting location. The method further provides determining a first position for the first participant in the physical meeting location and determining a view of an Augmented Reality (AR) head mounted display worn by a second participant at the physical meeting location. From the first video, the method provides generating AR video that makes the first participant appear to the second participant at the first position when viewed through the AR head mounted display. The method also includes transferring the AR video to the AR head mounted display for presentation to the second participant.
Abstract:
A communication system includes a processor and a computer readable medium, coupled with the processor, comprising instructions that program the processor to: cause an electromagnetic emitter to irradiate a location on a selected object in proximity to a speaker; determine, from radiation reflected by the selected object at the irradiated location, an audio characteristic of the irradiated location; and when the audio characteristic is acceptable, assigning an electromagnetic microphone to collect audio information from radiation reflected by the selected object at the irradiated location.
Abstract:
A communication system includes a processor and a computer readable medium, coupled with the processor, comprising instructions that program the processor to: cause an electromagnetic emitter to irradiate a location on a selected object in proximity to a speaker; determine, from radiation reflected by the selected object at the irradiated location, an audio characteristic of the irradiated location; and when the audio characteristic is acceptable, assigning an electromagnetic microphone to collect audio information from radiation reflected by the selected object at the irradiated location.
Abstract:
A video-enabled communication system that includes a processor, coupled with a camera, the camera acquiring an image of an object of interest during a video communication session and a computer readable medium, coupled with the processor, comprising instructions that cause the processor to select a reflected image of the object of interest for use in providing image information to a remote endpoint for display to another participant, wherein the reflected image is a reflection of the object of interest in a mirror having a line-of-sight to the camera.