The Experts below are selected from a list of 7890 Experts worldwide ranked by ideXlab platform

Eckehard Steinbach - One of the best experts on this subject based on the ideXlab platform.

  • a soa based middleware concept for in vehicle service discovery and Device Integration
    IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

  • Intelligent Vehicles Symposium - A SOA-based middleware concept for in-vehicle service discovery and Device Integration
    2010 IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

Michael Eichhorn - One of the best experts on this subject based on the ideXlab platform.

  • a soa based middleware concept for in vehicle service discovery and Device Integration
    IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

  • Intelligent Vehicles Symposium - A SOA-based middleware concept for in-vehicle service discovery and Device Integration
    2010 IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

Martin Pfannenstein - One of the best experts on this subject based on the ideXlab platform.

  • a soa based middleware concept for in vehicle service discovery and Device Integration
    IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

  • Intelligent Vehicles Symposium - A SOA-based middleware concept for in-vehicle service discovery and Device Integration
    2010 IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

Daniel Muhra - One of the best experts on this subject based on the ideXlab platform.

  • a soa based middleware concept for in vehicle service discovery and Device Integration
    IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

  • Intelligent Vehicles Symposium - A SOA-based middleware concept for in-vehicle service discovery and Device Integration
    2010 IEEE Intelligent Vehicles Symposium, 2010
    Co-Authors: Michael Eichhorn, Martin Pfannenstein, Daniel Muhra, Eckehard Steinbach
    Abstract:

    We present a novel middleware approach for in-vehicle service discovery and Device Integration that is based on the concept of Service-oriented Architectures (SOA). In order to be able to identify a suitable SOA system, we define a series of criteria the SOA platform should fulfill. These criteria take into account the specific requirements of the automotive domain. Based on these criteria we compare nine different SOA standards and show why the Device Profile for Web Services (DPWS) standard is most suitable as the middleware of an in-car infotainment and communication system. Furthermore, we present a prototypical implementation of an in-vehicle network based on the DPWS middleware. Hence, we enable the Integration of nomadic Devices by providing their functionalities within the network and consequently including their graphical output into the in-vehicle Human Machine Interface (HMI). Due to the system design it is also possible to use nomadic Devices as an additional display to present the HMI. Finally, an in-vehicle controller is included into our SOA and therefore available to all other Devices within our system.

A. Riley - One of the best experts on this subject based on the ideXlab platform.

  • Simplified nonplanar wafer bonding for heterogeneous Device Integration
    Applied Physics Letters, 2004
    Co-Authors: J. Geske, J.e. Bowers, A. Riley
    Abstract:

    We demonstrate a simplified nonplanar wafer bonding technique for heterogeneous Device Integration. The improved technique can be used to laterally integrate dissimilar semiconductor Device structures on a lattice-mismatched substrate. Using the technique, two different InP-based vertical-cavity surface-emitting laser active regions have been integrated onto GaAs without compromising the quality of the photoluminescence. Experimental and numerical simulation results are presented.

  • Simplified nonplanar wafer bonding for heterogeneous Device Integration
    16th IPRM. 2004 International Conference on Indium Phosphide and Related Materials 2004., 2004
    Co-Authors: J. Geske, J.e. Bowers, A. Riley
    Abstract:

    We demonstrate a new, simplified nonplanar wafer bonding technique for heterogeneous Device Integration. The improved technique can be used to laterally integrate dissimilar semiconductor Device structures on a lattice mismatched substrate. Using the technique two InP based VCSEL active regions have been integrated onto GaAs without compromising the quality of the photoluminescence. Experimental and numerical simulation results are presented.