Data relay between testing application and internal diagnostics in mobile testing system

    公开(公告)号:GB2426412A

    公开(公告)日:2006-11-22

    申请号:GB0607188

    申请日:2006-04-10

    Inventor: ENGEL GLENN R

    Abstract: A data relay mechanism is connected to the mobile device over a data interface, such that a test application running on the programming environment can send and receive data from the internal diagnostics of the mobile device over the data interface by using the data relay mechanism. The device can be used in a mobile testing system for testing cellular and wireless networks and infrastructure using mobile devices. For example, the mobile devices may include both a programming environment capable of running a test application and internal diagnostics. The device provides an external data link which can be connected to a mobile device to allow subsystems within the mobile device that otherwise would be unable to communicate to exchange data with each other.

    32.
    发明专利
    未知

    公开(公告)号:DE102004036784A1

    公开(公告)日:2005-07-28

    申请号:DE102004036784

    申请日:2004-07-29

    Abstract: A measurement device having a configurable measurement interface that enables the dynamic allocation of responsibilities among front-end and back-end subsystems of a measurement device. A measurement device according to the present teachings includes a front-end subsystem for performing an interaction with a physical environment and back-end subsystem having a set of resources for supporting the front-end subsystem. The front-end and back-end subsystems are coupled to and communicate through a measurement interface. The front-end subsystem transfers a set of bootstrap information via the measurement interface to the back-end subsystem and in response the back-end subsystem configures the resources to support the front-end subsystem.

    A measurement interface for transferring bootstrap information

    公开(公告)号:GB2409740A

    公开(公告)日:2005-07-06

    申请号:GB0427395

    申请日:2004-12-14

    Abstract: A measurement device having a configurable measurement interface 18 that enables the dynamic allocation of responsibilities among front-end and back-end subsystems of a measurement device, includes a front-end subsystem 12 for performing an interaction with a physical environment and a back-end subsystem 14 having a set of resources for supporting the front-end subsystem 12. The front-end and back-end subsystems 12 and 14 are coupled to and communicate through a measurement interface 18. The front-end subsystem 12 transfers a set of bootstrap information 20 via the measurement interface 18 to the back-end subsystem 14 and in response the back-end subsystem 14 configures the resources to support the front-end subsystem 12.

    Data Collection Node
    34.
    发明专利

    公开(公告)号:GB2382413A

    公开(公告)日:2003-05-28

    申请号:GB0225892

    申请日:2002-11-06

    Inventor: ENGEL GLENN R

    Abstract: A data collection node 12 for autonomously collecting data has interfaces for receiving signals from sensor 16, and for connecting the data collection node to a computer network. A controller 17 in the node causes the node to be registered with a server 20 connected to the computer network when the data collection node is first activated on the computer network. As part of the registration process, the server provides a Web page that provides access to data communicated by the controller. The controller generates data based on sensor measurements and communicates that data to the server via the computer network, preferably via HTTP. Users having access to the Web page can then access the data collected by the node. If a firewall 21 is present between the server and the node, the controller preferably communicates with a proxy server 25.

    36.
    发明专利
    未知

    公开(公告)号:DE60305606T2

    公开(公告)日:2007-05-03

    申请号:DE60305606

    申请日:2003-11-11

    Inventor: ENGEL GLENN R

    Abstract: During device deployment in a network environment, authentication is achieved by the device 10 having a pre-configured security key which a service facility 20 uses to authenticate the device 10. These techniques enable a service facility 20 to associate pre-configured security keys to owners/users of devices, and enable devices to be purchased without any custom configuration, and enable devices to be attached to a network and automatically obtain authentication and configuration based on the identity of the owner of the devices.

    Selective distribution of device configuration a loosely coupled autonomous measurement system

    公开(公告)号:GB2430262A

    公开(公告)日:2007-03-21

    申请号:GB0616655

    申请日:2006-08-22

    Abstract: Probe configuration is achieved in a measurement system in which probes are given possible configuration data depending upon conditions in an area relevant to the area of the probe. The possible probe configurations include global boundaries, such as time, and each probe then, based upon the possible configurations, select a configuration. In one embodiment, the probe may interact with a central processor to further define the probe configuration. In one embodiment, probes may communicate with other probes, both to help define their operating environment and to optionally provide configuration data to another probe.

    Secure communication method
    40.
    发明专利

    公开(公告)号:GB2382756B

    公开(公告)日:2005-02-23

    申请号:GB0225893

    申请日:2002-11-06

    Inventor: ENGEL GLENN R

    Abstract: A method for operating a computer system having first, second, and third data processors connected by a network. The second and third data processors are connected by an insecure network segment, while the first and third data processors are connected by a network segment that has a higher level of security than the insecure network segment. A secure communication between the first and second data processors is established by having the second data processor send an encryption key for a first encryption protocol to the third data processor utilizing a second encryption protocol. The third data processor forwards the encryption key to the first data processor. The first data processor then sends a message to the second data processor utilizing the encryption key and the first encryption protocol.

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