Abstract:
A method and system are provided that enhance human/machine communication so as to more closely approximate natural human/human communication by more effectively establishing communications links for human- interactive media. Specifically, the speed and quality of the connection are improved by the method and system, resulting in a more natural user experience. The method includes receiving a Session Initiation Protocol (SIP) call request from an Endpoint (EP). The method determines an external address based on an internal address of the EP uniquely mapped to the external address and pre-disthbuted to SIP internal routers. The method includes modifying the SIP call request to replace the EP internal address with the EP external address. The method includes forwarding the EP external address to the EP. The method includes establishing a communication link for human-interactive media between the EP and the call provider, the EP using the EP external address, and the communication link not including the SIP Internal Router.
Abstract:
A method and system are provided that enhance human/machine communication so as to more closely approximate natural human/human communication by more effectively establishing communications links for human- interactive media. Specifically, the speed and quality of the connection are improved by the method and system, resulting in a more natural user experience. The method includes a communication system receiving a call request from a requestor. The communication system has a Connection Proxy (CP) and a plurality of Endpoints (EPs). The CP has an endpoint state table (EST) configured to store state information associated with each of the plurality of endpoints (EPs). Based on the call request, the CP selects an EP using the EST. If the selected EP accepts the requested communications link, the CP establishes a communications link that excludes the CP itself. The CP also updates the EST based on a response to the call request from the selected EP.
Abstract:
Device (6) for an apparatus for forming fibre blankets, the fibres being formed from a material that can be attenuated by internal centrifugation and by attenuation by means of a gas stream, the device comprising a guiding duct (60) into which the fibres are intended to be channelled, of longitudinal axis (X), which duct has a first part (61) intended to form the inlet of the duct at the point where the fibres are intended to be introduced into said duct, a second or central part (62) and a third part (63) intended to form the outlet of said duct, characterized in that it includes articulation means (7) that are suitable for acting mechanically on the third part of the duct (63) so as to vary its dimensions and/or the position of at least one of its parts relative to said longitudinal axis (X).
Abstract:
Device (6) for an apparatus for forming fibre blankets, the fibres being formed from a material that can be attenuated by internal centrifugation and by attenuation by means of a gas stream, the device comprising a guiding duct (60) into which the fibres are intended to be channelled, of longitudinal axis (X), which duct has a first part (61) intended to form the inlet of the duct at the point where the fibres are intended to be introduced into said duct, a second or central part (62) and a third part (63) intended to form the outlet of said duct, characterized in that it includes articulation means (7) that are suitable for acting mechanically on the third part of the duct (63) so as to vary its dimensions and/or the position of at least one of its parts relative to said longitudinal axis (X).
Abstract:
The invention relates to an internal combustion burner that comprises a combustion chamber (2) supplied with fuel and oxidant, and at least two combustion devices (3a, 3b) supplied with oxidant and fuel. The combination of the two combustion devices, having different configurations for respectively generating two different types of flames, and of a burner-wall cooling system (24, 25) with air supply along said walls, results in a burner capable of providing a combustion gas temperature of up to 1700°C that can easily be cooled and has sufficiently small dimensions to be housed, in particular, in existing equipment for making rock or glass wool.