Abstract:
A configuration for receiving transmission data at multiple rates where one rate is not necessarily a multiple of another is provided. A host board includes a receiving circuit, a cross point switch, and a switch control circuit. The receiving circuit includes a receiving unit configured to receive a first data signal transmitted at a first rate, and a second receiving unit configured to receive a second data signal transmitted at a second rate different from the first rate. The cross point switch includes input terminals and output terminals. The cross point switch is configured to define a path of signal between the input terminals and the output terminals to route an input data signal to at least one of the first receiving unit and the second receiving unit.
Abstract:
A gateway utilizes a proxy Internet Protocol (“IP”) addressing scheme to communicate with disparate network service providers. A first IP address prefix may be received from an alternative service provider in communication with the gateway. The gateway may assign a proxy IP address from the first IP address prefix for computing devices in communication with the gateway. A second IP address prefix may be received from a master service provider in communication with the gateway. The computing devices may be provisioned with an actual IP address assigned from the second IP address prefix. The gateway may then route data traffic utilizing the assigned proxy IP address between the alternative service provider and the computing devices utilizing the actual assigned proxy IP address. The gateway may further route data traffic utilizing the actual assigned IP address between the master service provider and the computing devices utilizing the actual assigned IP address.
Abstract:
A method, a device, and a network system of establishing a tunnel are provided in embodiments of the present disclosure. The method of establishing the tunnel includes: obtaining, by a WTP, an address of an AC and an address of a BRAS from a DHCP server; using, by the WTP, the address of the AC to establish a CAPWAP control tunnel with the AC; and using, by the WTP, the address of the BRAS to establish a CAPWAP data tunnel with the BRAS. By using the technical scheme provided in the embodiments of the present disclosure, the CAPWAP data tunnel may be established between the WTP and the BRAS.
Abstract:
A method, a device, and a network system of establishing a tunnel are provided in embodiments of the present disclosure. The method of establishing the tunnel includes: obtaining, by a WTP, an address of an AC and an address of a BRAS from a DHCP server; using, by the WTP, the address of the AC to establish a CAPWAP control tunnel with the AC; and using, by the WTP, the address of the BRAS to establish a CAPWAP data tunnel with the BRAS. By using the technical scheme provided in the embodiments of the present disclosure, the CAPWAP data tunnel may be established between the WTP and the BRAS.
Abstract:
A cable television plant may include fiber nodes, cable modems, a management information base (MIB), and a cable modem termination system (CMTS). The CMTS may include logic to apply information from the MIB to determine the suitability of resources assigned to the fiber nodes from particular MAC domains for providing data communications.
Abstract:
A method and an apparatus for sharing content in a home network environment are provided. The method for sharing the content in the home network environment includes detecting a connection to a network; searching for at least one device connected to the network; and when the at least one is connected to the network, checking a type of the at least one device connected to the network, and determining whether to operate as a content providing server according to the type of the at least one device.
Abstract:
A method for providing user information to a CGN device, includes: receiving, by the RADIUS server, accounting start request information of a user sent by the BRAS device, where the accounting start request information carries user information of the user, and the user information includes: a user identity and management information of the user; and sending, by the RADIUS server, the user information to a CGN device, so that the CGN device is capable of performing network management on the user according to the user information.
Abstract:
In a broadband access network, calls can be kept active even when a telephone network fails. A voice gateway function captures callee telephone number information sent from a caller subscriber telephone to the telephone network and, when the telephone network fails, keeps the call active by retaining the connection between the caller and the callee. Furthermore, when the telephone network fails, the operation mode of the voice gateway and all ONTs is switched from an H.248 gateway mode to an SIP softswitch mode, allowing the voice gateway function to relay communication packets between ONTs and new call connections to be made in the broadband access network.
Abstract:
An approach is provided for the secure exchange of multimedia content through a mobile telephony device. A docking station receives a control signal from a media headset, and in response thereto determines to establish a communication link. The docking station selects one of a plurality of communication options corresponding to different networks based on the type of the communication link. The docking station initiates an authentication procedure for the communication link according to the selected communication option. Subsequent to successful authorization, the docking station receives multimedia content over the authenticated communication link, and transmits the received media signal to the media headset.
Abstract:
In one embodiment, upstream transmission throughput in a cable network is markedly increased by moving up the US/DS frequency split by approximately an order of magnitude to a few hundred MHz. Additional transceivers (carriers) may be implemented to take advantage of the broader spectrum. A block of multiple upstream carriers (FIG. 2A) are associated to form a single logical upstream providing a high-bandwidth, in-order packet stream. The carriers have a common start time (704), pursuant to a single MAP message, and operation synchronously to transmit an upstream transmission frame (250). They may use OFDM or discrete carriers. A convergence layer (350) assembles the data from all of the upstream channels (320,322,324) for presentation to the MAC layer logic (308,310) as a single, serial, high-speed transmission from the CM.