Abstract:
A method for encoding network data, such as Internet Protocol (IP) data, into a format for transmission over a satellite system is described. The network data is configured in a packet having a data block and header information. The network data packet is encoded into a variable-length multi-packet transport (MPT) frame. The MPT frame comprises a data frame to hold data and header information. The IP packet in inserted its entirety into the data frame of the MPT frame. The variable-length MTP frame is then encoded into one or more fixed-length MTP packets. Each MPT packet has a data fragment block comprising a portion of the MTP frame and associated header information to designate what portion of the MTP frame is contained in the data fragment block.
Abstract:
A webcast system delivers Web content from a webcast center over a broadcast medium to many clients. The webcast center has a server unit that gathers Web pages from sites on the Internet and stores the pages in a cache. The server unit bundles the pages from the cache into package files and stores the package files in a package store. The webcast center also has a broadcast unit that retrieves the package files from the package store and delivers the package files to the clients over the broadcast medium. Each client is equipped with a receiver to receive the broadcast package files. The client maintains a subscription database to store a directory of the Web content gathered by the webcast center. A subscriber user interface enables a user to select preferred Web content from the directory of the subscription database. The client creates a filter based on the user's preferences which is used to direct the receiver to collect only the package files carrying the preferred Web content, while rejecting packages carrying unwanted Web content.
Abstract:
A method for encoding network data, such as Internet Protocol (IP) data, into a format for transmission over a satellite system is described. The network data is configured in a packet having a data block and header information. The network data packet is encoded into a variable-length multi-packet transport (MPT) frame. The MPT frame comprises a data frame to hold data and header information. The IP packet in inserted its entirety into the data frame of the MPT frame. The variable-length MTP frame is then encoded into one or more fixed-length MTP packets. Each MPT packet has a data fragment block comprising a portion of the MTP frame and associated header information to designate what portion of the MTP frame is contained in the data fragment block. The MPT packets are sized to be embedded as a specific size payload of the satellite packet that is transmitted over a satellite network. Using this method, data received over a data network (i.e., Ethernet or Internet) in large network data packets are broken into smaller packets defined by the mult-packet transport. These smaller packets are then inserted as the data payload within standard fixed-size packets suitable for transmission across a particular distribution medium, such as satellite network. The network data remains independent of the underlying network and can be easily extracted at the receiver for use by computer applications.
Abstract:
A client computer collects registration information regarding a user and/or the client computer and attempts to upload the collected information to a remote registration system. The client computer stores the registration information locally and delays uploading of the information to the registration system until a connection to the registration system is established. The connection to the registration system and the uploading of the registration information can be performed automatically and transparently to the user, eliminating the need for any further required actions on the part of the user once the registration information is collected.
Abstract:
A client computer collects registration information regarding a user and/or the client computer and attempts to upload the collected information to a remote registration system. The client computer stores the registration information locally and delays uploading of the information to the registration system until a connection to the registration system is established. The connection to the registration system and the uploading of the registration information can be performed automatically and transparently to the user, eliminating the need for any further required actions on the part of the user once the registration information is collected.
Abstract:
A client computer collects registration information regarding a user and/or the client computer and attempts to upload the collected information to a remote registration system. The client computer stores the registration information locally and delays uploading of the information to the registration system until a connection to the registration system is established. The connection to the registration system and the uploading of the registration information can be performed automatically and transparently to the user, eliminating the need for any further required actions on the part of the user once the registration information is collected.
Abstract:
A remote control system has a remote control device equipped with a handling sensor (e.g., motion sensor) that detects when a user first picks up or otherwise handles the handset before actuating the keys. The handling sensor generates a signal that is automatically transmitted to the controlled device without requiring any user input. The signal is received at a controlled device and initiates a startup phase. In this manner, the startup phase is well underway before the user actually presses a key on the remote control device. Upon conclusion of the startup phase, the user may enter commands using the keys.
Abstract:
Methods and apparatus for transferring a communication and computer session between devices. A user launches a communication session on a first device, such as a personal computer. The user may then selectively transfer the communication session to another device, such as a wireless device, through activation of a triggering signal. In response, the context of the communication session is determined as it is being performed on the first device, including a type of the communication session. The communication session is then transferred to the second device by launching a new communication session on the second device and transferring the context of the communication session corresponding to the first device to the new communication session on the second device. The communications session is continued via use of the first device as a proxy for the second device.
Abstract:
A system and method for storing personal, medical, and insurance related information on a wireless device are disclosed. The information may be stored by sending it from a remote personal computer to a central database using the Internet. The information may be stored on the central database. The information may be accessed on the wireless device (e.g. on a display) or sent from the wireless device or a central database to remote locations, such as a doctor's office or hospital.
Abstract:
A client computer runs an operating system that executes additional applications by loading them using an application loader and executes device drivers for peripheral devices by loading the drivers using a device loader. The operating system restricts the functionality of the operating system, such as by making selected portions and functionality of the operating system unavailable to the user or by limiting the user's ability to add software applications or device drivers to the computer. Additionally, various techniques can be used to remove or reduce the functionality limitations of the computer