摘要:
A method for determining the offload type for the processing of the protocol of a network connection is disclosed. An offload policy manager in a server node determines the offload type on the basis of a number of factors, including the application type of the network connection, the traffic priority of the network connection, and the port of the network connection. After the offload policy manager selects the offload type of the network connection, the offload policy manager identifies the offload type to the offload engine, which processes the protocol of the network connection according to the offload type selected by the offload policy manager. The offload policy manager is able to access a number of application-specific tables. The offload policy manager selects an offload type by cross-referencing on an application-specific table the traffic priority of the network connection against the port of the network connection.
摘要:
Systems and methods for managing wireless communication between information handling system/s and one or more peripherals or other external devices, and that may be implemented in one embodiment to provide a virtual wireless docking environment for a portable information handling system and associated wired and wireless attached devices and peripherals.
摘要:
Systems and methods for distribution of wireless network access using a common media access control (MAC) architecture. In one embodiment, a platform architecture may be provided for high speed Broadband Wireless Access (BWA) service termination using a common MAC architecture and router functionality, e.g., an integrated router and firewall service may be provided to a local WLAN network, leveraging a common orthogonal frequency division multiplexing (OFDM)-based MAC architecture for both the BWA and WLAN functionality. Such a common MAC architecture may be implemented to optimize the performance and throughput between the broadband wireless ISP data service and localized WLAN network.
摘要:
Systems and methods are disclosed that provide WUSB (wireless universal serial bus) and wireless audio/video interfaces within a single device by integrating a Bluetooth subsystem with a WUSB hub and by providing shared operation between the UWB (ultra wide band) and Bluetooth subsystems. In one embodiment, a system includes both a UWB subsystem and a Bluetooth subsystem that are configured to share one or more operational parameters, such as device pairing information. As such, Bluetooth subsystems and the WUSB subsystems are allowed to cooperate and share information to streamline operation, and this streamlining allows the Bluetooth subsystem to handle isochronous operations, such as audio/video communications, and allows the UWB subsystem to continue to handle USB connected peripheral devices. The disclosed systems with WUSB and wireless audio/video interfaces can also be included as subsystems within other devices, such as display monitors or speaker systems for computer systems.
摘要:
A method for determining the offload type for the processing of the protocol of a network connection is disclosed. An offload policy manager in a server node determines the offload type on the basis of a number of factors, including the application type of the network connection, the traffic priority of the network connection, and the port of the network connection. After the offload policy manager selects the offload type of the network connection, the offload policy manager identifies the offload type to the offload engine, which processes the protocol of the network connection according to the offload type selected by the offload policy manager. The offload policy manager is able to access a number of application-specific tables. The offload policy manager selects an offload type by cross-referencing on an application-specific table the traffic priority of the network connection against the port of the network connection.
摘要:
Systems and methods are disclosed that provide WUSB (wireless universal serial bus) and wireless audio/video interfaces within a single device by integrating a Bluetooth subsystem with a WUSB hub and by providing shared operation between the UWB (ultra wide band) and Bluetooth subsystems. In one embodiment, a system includes both a UWB subsystem and a Bluetooth subsystem that are configured to share one or more operational parameters, such as device pairing information. As such, Bluetooth subsystems and the WUSB subsystems are allowed to cooperate and share information to streamline operation, and this streamlining allows the Bluetooth subsystem to handle isochronous operations, such as audio/video communications, and allows the UWB subsystem to continue to handle USB connected peripheral devices. The disclosed systems with WUSB and wireless audio/video interfaces can also be included as subsystems within other devices, such as display monitors or speaker systems for computer systems.
摘要:
Methods and systems are disclosed for connecting multiple wireless personal area network (WPAN) or ultra wide band (UWB) devices to a host information handling system having a display system providing WPAN connection for WPAN peripheral devices and to serve as a WPAN hub for the WPAN peripheral devices. A data communication interface associated with the display system provides communications to a host information handling system. The WPAN peripheral devices are docked as WPAN devices for the host information handling system. Subsequent docking between the host and a display monitor is detected by device drivers. A USB hub with UWB support is located in a display monitor. The USB hub can connect to a workstation, docking station, portable computer, or the like. The display monitor can be a storage device, and can store UWB drivers in memory on the display monitor.
摘要:
Systems and methods for providing a deterministic process for implementing network traffic prioritization, particularly for implementing bandwidth latency sensitive applications are described herein. In one embodiment, multiple network interfaces are provided within a system. Network communication traffic through the system may be prioritized between different network interfaces based upon the type of traffic that is being handled. Higher priority bandwidth or latency sensitive traffic maybe routed to the network interface that best suited for such traffic. In some applications each network interface may operate in a separate band, however, in other applications one or more of the network interfaces may be of the same band type.