Abstract:
System and method for managing connections in a mobile device. A first application may be executing on the mobile device. A first application request, including first quality of service (QOS) parameters and first connection information for the first application, may be received. The first QOS parameters and the first connection information may be stored in a routing table. A first connection for the first application may be established based on the first QOS parameters and the first connection information. A second application may be executing on the mobile device. A second application request, including second QOS parameters and second connection information for the second application, may be received. The second QOS parameters and the second connection information may be stored in the routing table. A second connection for the second application may be established based on the second QOS parameters and the second connection information.
Abstract:
An apparatus supporting MTC in an LTE environment including an LTE modem and a CDMA modem. The LTE modem accesses a first wireless network and executes first data transactions, where the first wireless network comports with LTE standards. The CDMA modem is operationally coupled to the LTE modem, and accesses a second wireless network and executes second data transactions, where the second wireless network comports with one or more CDMA-based standards. The CDMA modem includes an inter-radio access technology (IRAT) API element and an inter-process communication (IPC) module. The IRAT API element is configured to send/receive IRAT messages via function calls to/from the LTE modem, where the IRAT messages remain the same regardless of interface requirements for the LTE modem. The IPC module is coupled to the IRAT API element, and is configured to generalize the function calls to enable the CDMA modem to interoperate with the LTE modem.
Abstract:
An apparatus supporting MTC in an LTE environment including an LTE modem and a CDMA modem. The LTE modem accesses a first wireless network and executes first data transactions, where the first wireless network comports with LTE standards. The CDMA modem is operationally coupled to the LTE modem, and accesses a second wireless network and executes second data transactions, where the second wireless network comports with one or more CDMA-based standards. The CDMA modem includes an inter-radio access technology (IRAT) API element and an inter-process communication (IPC) module. The IRAT API element is configured to send/receive IRAT messages via function calls to/from the LTE modem, where the IRAT messages remain the same regardless of interface requirements for the LTE modem. The IPC module is coupled to the IRAT API element, and is configured to generalize the function calls to enable the CDMA modem to interoperate with the LTE modem.
Abstract:
System and method for handling multiple connection requests between an Access Terminal (AT) and an Access Network (AN). The method may include receiving a first connection request. Connection request information regarding a number of connection requests may be updated based on receiving the first connection request. If there is not a currently active wireless connection, a connection may be established between the AT and the AN. If there is a currently active wireless connection, a notification may be sent indicating that the wireless connection between the AT and the AN has been established. A connection release request may be received. Accordingly, the update connection request information may be updated based on receiving the connection release request. If there is not a currently active wireless connection, the wireless connection between the AT and the AN may be closed.
Abstract:
System and method for managing connections in a mobile device. A first application may be executing on the mobile device. A first application request, including first quality of service (QOS) parameters and first connection information for the first application, may be received. The first QOS parameters and the first connection information may be stored in a routing table. A first connection for the first application may be established based on the first QOS parameters and the first connection information. A second application may be executing on the mobile device. A second application request, including second QOS parameters and second connection information for the second application, may be received. The second QOS parameters and the second connection information may be stored in the routing table. A second connection for the second application may be established based on the second QOS parameters and the second connection information.
Abstract:
System and method for handling multiple connection requests between an Access Terminal (AT) and an Access Network (AN). The method may include receiving a first connection request. Connection request information regarding a number of connection requests may be updated based on receiving the first connection request. If there is not a currently active wireless connection, a connection may be established between the AT and the AN. If there is a currently active wireless connection, a notification may be sent indicating that the wireless connection between the AT and the AN has been established. A connection release request may be received. Accordingly, the update connection request information may be updated based on receiving the connection release request. If there is not a currently active wireless connection, the wireless connection between the AT and the AN may be closed.
Abstract:
A method for providing improved reverse link transmission timing in an access terminal is provided. The method includes processing automatic repeat request (ARQ) bits from a MAC bit processing unit for a previous sub-frame. The ARQ bits comprise a hybrid ARQ (H-ARQ) bit, a last ARQ (L-ARQ) bit, and a packet ARQ (P-ARQ) bit. The method also includes calculating the maximum allowed reverse rate and grant size for a MAC flow. The method further includes distributing grants to each application in the MAC flow. The method also includes storing a stored read pointer in an application transmit queue, for each application in the MAC flow. The method also includes preparing data for transmission, in response to storing the stored read pointer for each application in the MAC flow, based on the ARQ bits. The method also includes transmitting the data.
Abstract:
The present invention discloses a system and method for eliminating useless waiting and needless packet retransmission in a radio link protocol (RLP) system having a RLP sender and a RLP receiver with one or more reception buffers, the method comprising checking for any missing packet upon receiving a transmission by the RLP receiver, sending one or more negative acknowledgements (Naks) for every missing packet to the RLP sender by the RLP receiver, retransmitting by the RLP sender only packets requested by one or more negative acknowledgements (Naks) when the RLP sender also receives a transmission suspension request, and receiving transmissions by the RLP receiver after the transmission suspension request has been sent out by the RLP receiver.
Abstract:
A mobile communication device for providing QoS of packet transmission is provided. The packet transmission from and to the mobile communication device is performed by repeating a predetermined number of interlaces by a predetermined cycle. In the mobile communication device, a wireless module transmits a first sub-packet of a first packet and a first sub-packet of a second packet to a mobile communication network, and receives a response message corresponding to the first sub-packet of the first packet from the mobile communication network, wherein the first sub-packet of the first packet is transmitted in a first interlace prior to a second interlace in which the first sub-packet of the second packet is transmitted. Also, a controller module calculates a plurality of QoS parameters for a second sub-packet of the second packet in response to the response message, prepares the second sub-packet of the second packet with the QoS parameters, and transmits the second sub-packet of the second packet in the second interlace to the mobile communication network via the wireless module.
Abstract:
A method for determining slotted mode operation timing in a hybrid access terminal comprises acquiring a first network, determining a first access interval for the first network, acquiring a second network, determining a second access interval for the second network, determining if the first and second access intervals overlap, and re-determining the second access interval when it is determined that the first and second access intervals overlap.