The Experts below are selected from a list of 237 Experts worldwide ranked by ideXlab platform
Johannes F. Broenink - One of the best experts on this subject based on the ideXlab platform.
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ETFA - Virtual prototyping through co-simulation of a Cartesian Plotter
2008 IEEE International Conference on Emerging Technologies and Factory Automation, 2008Co-Authors: M.a. Groothuis, A.s. Damstra, Johannes F. BroeninkAbstract:This paper shows a model-based design trajectory for the development of real-time embedded control software using virtual prototyping. As a test case, a Cartesian Plotter is designed. Functional correctness of the Plotter software has been ensured by means of co-simulation using a virtual prototype before deploying it on target. Except for the interface implementation, the software that is used in the co-simulation is identical to the software that is compiled to run on the target computing platform. Virtual prototyping is especially important if the real target can damage itself if it is operated outside its safe operation zone or when prototypes are not yet available for testing. The co-simulation of the software against a virtual prototype resulted in a first-time-right deployment on the real target.
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Virtual prototyping through co-simulation of a Cartesian Plotter
2008 IEEE International Conference on Emerging Technologies and Factory Automation, 2008Co-Authors: M.a. Groothuis, A.s. Damstra, Johannes F. BroeninkAbstract:This paper shows a model-based design trajectory for the development of real-time embedded control software using virtual prototyping. As a test case, a Cartesian Plotter is designed. Functional correctness of the Plotter software has been ensured by means of co-simulation using a virtual prototype before deploying it on target. Except for the interface implementation, the software that is used in the co-simulation is identical to the software that is compiled to run on the target computing platform. Virtual prototyping is especially important if the real target can damage itself if it is operated outside its safe operation zone or when prototypes are not yet available for testing. The co-simulation of the software against a virtual prototype resulted in a first-time-right deployment on the real target.
Jörg-olaf Wolff - One of the best experts on this subject based on the ideXlab platform.
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Numerical study on wave dynamics and wave-induced bed erosion characteristics in Potter Cove, Antarctica
Ocean Dynamics, 2013Co-Authors: Chai Heng Lim, Karsten Lettmann, Jörg-olaf WolffAbstract:Wave generation, propagation, and transformation from deep ocean over complex bathymetric terrains to coastal waters around Potter Cove (King George Island, South Shetland Islands, Antarctica) have been simulated for an austral summer month using the Simulating Waves Nearshore (SWAN) wave model. This study aims to examine and understand the wave patterns, energy fluxes, and dissipations in Potter Cove. Bed shear stress due to waves is also calculated to provide a general insight on the bed sediment erosion characteristics in Potter Cove.A nesting approach has been implemented from an oceanic scale to a high-resolution coastal scale around Potter Cove. The results of the simulations were compared with buoy observations obtained from the National Data Buoy Center, the WAVEWATCH III model results, and GlobWave altimeter data. The quality of the modelling results has been assessed using two statistical parameters, namely the Willmott’s index of agreement D and the bias index. Under various wave conditions, the significant wave heights at the inner cove were found to be about 40–50 % smaller than the ones near the mouth of Potter Cove. The wave power in Potter Cove is generally low. The spatial distributions of the wave-induced bed shear stress and active energy dissipation were found to be following the pattern of the bathymetry, and waves were identified as a potential major driving force for bed sediment erosion in Potter Cove, especially in shallow water regions. This study also gives some results on global ocean applications of SWAN.
M.a. Groothuis - One of the best experts on this subject based on the ideXlab platform.
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ETFA - Virtual prototyping through co-simulation of a Cartesian Plotter
2008 IEEE International Conference on Emerging Technologies and Factory Automation, 2008Co-Authors: M.a. Groothuis, A.s. Damstra, Johannes F. BroeninkAbstract:This paper shows a model-based design trajectory for the development of real-time embedded control software using virtual prototyping. As a test case, a Cartesian Plotter is designed. Functional correctness of the Plotter software has been ensured by means of co-simulation using a virtual prototype before deploying it on target. Except for the interface implementation, the software that is used in the co-simulation is identical to the software that is compiled to run on the target computing platform. Virtual prototyping is especially important if the real target can damage itself if it is operated outside its safe operation zone or when prototypes are not yet available for testing. The co-simulation of the software against a virtual prototype resulted in a first-time-right deployment on the real target.
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Virtual prototyping through co-simulation of a Cartesian Plotter
2008 IEEE International Conference on Emerging Technologies and Factory Automation, 2008Co-Authors: M.a. Groothuis, A.s. Damstra, Johannes F. BroeninkAbstract:This paper shows a model-based design trajectory for the development of real-time embedded control software using virtual prototyping. As a test case, a Cartesian Plotter is designed. Functional correctness of the Plotter software has been ensured by means of co-simulation using a virtual prototype before deploying it on target. Except for the interface implementation, the software that is used in the co-simulation is identical to the software that is compiled to run on the target computing platform. Virtual prototyping is especially important if the real target can damage itself if it is operated outside its safe operation zone or when prototypes are not yet available for testing. The co-simulation of the software against a virtual prototype resulted in a first-time-right deployment on the real target.
Chai Heng Lim - One of the best experts on this subject based on the ideXlab platform.
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Numerical study on wave dynamics and wave-induced bed erosion characteristics in Potter Cove, Antarctica
Ocean Dynamics, 2013Co-Authors: Chai Heng Lim, Karsten Lettmann, Jörg-olaf WolffAbstract:Wave generation, propagation, and transformation from deep ocean over complex bathymetric terrains to coastal waters around Potter Cove (King George Island, South Shetland Islands, Antarctica) have been simulated for an austral summer month using the Simulating Waves Nearshore (SWAN) wave model. This study aims to examine and understand the wave patterns, energy fluxes, and dissipations in Potter Cove. Bed shear stress due to waves is also calculated to provide a general insight on the bed sediment erosion characteristics in Potter Cove.A nesting approach has been implemented from an oceanic scale to a high-resolution coastal scale around Potter Cove. The results of the simulations were compared with buoy observations obtained from the National Data Buoy Center, the WAVEWATCH III model results, and GlobWave altimeter data. The quality of the modelling results has been assessed using two statistical parameters, namely the Willmott’s index of agreement D and the bias index. Under various wave conditions, the significant wave heights at the inner cove were found to be about 40–50 % smaller than the ones near the mouth of Potter Cove. The wave power in Potter Cove is generally low. The spatial distributions of the wave-induced bed shear stress and active energy dissipation were found to be following the pattern of the bathymetry, and waves were identified as a potential major driving force for bed sediment erosion in Potter Cove, especially in shallow water regions. This study also gives some results on global ocean applications of SWAN.
A.s. Damstra - One of the best experts on this subject based on the ideXlab platform.
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ETFA - Virtual prototyping through co-simulation of a Cartesian Plotter
2008 IEEE International Conference on Emerging Technologies and Factory Automation, 2008Co-Authors: M.a. Groothuis, A.s. Damstra, Johannes F. BroeninkAbstract:This paper shows a model-based design trajectory for the development of real-time embedded control software using virtual prototyping. As a test case, a Cartesian Plotter is designed. Functional correctness of the Plotter software has been ensured by means of co-simulation using a virtual prototype before deploying it on target. Except for the interface implementation, the software that is used in the co-simulation is identical to the software that is compiled to run on the target computing platform. Virtual prototyping is especially important if the real target can damage itself if it is operated outside its safe operation zone or when prototypes are not yet available for testing. The co-simulation of the software against a virtual prototype resulted in a first-time-right deployment on the real target.
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Virtual prototyping through co-simulation of a Cartesian Plotter
2008 IEEE International Conference on Emerging Technologies and Factory Automation, 2008Co-Authors: M.a. Groothuis, A.s. Damstra, Johannes F. BroeninkAbstract:This paper shows a model-based design trajectory for the development of real-time embedded control software using virtual prototyping. As a test case, a Cartesian Plotter is designed. Functional correctness of the Plotter software has been ensured by means of co-simulation using a virtual prototype before deploying it on target. Except for the interface implementation, the software that is used in the co-simulation is identical to the software that is compiled to run on the target computing platform. Virtual prototyping is especially important if the real target can damage itself if it is operated outside its safe operation zone or when prototypes are not yet available for testing. The co-simulation of the software against a virtual prototype resulted in a first-time-right deployment on the real target.