Explicit parallel co-simulation approach: analysis and improved coupling method based on H-infinity synthesis
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Publication:2049697
DOI10.1007/S11044-021-09785-XOpenAlexW3135874197WikidataQ114224604 ScholiaQ114224604MaRDI QIDQ2049697
Canhui Wu, Weitao Chen, Shenhai Ran, Bengt Jacobson
Publication date: 27 August 2021
Published in: Multibody System Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11044-021-09785-x
Parallel numerical computation (65Y05) Dynamics of multibody systems (70E55) Numerical methods for mathematical programming, optimization and variational techniques (65Kxx)
Related Items (3)
Comparison of X-T and X-X co-simulation techniques applied on railway dynamics ⋮ A relaxed coupling method for algebraically constrained mechanical systems ⋮ Energy-based monitoring and correction to enhance the accuracy and stability of explicit co-simulation
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Cites Work
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- On the effect of multirate co-simulation techniques in the efficiency and accuracy of multibody system dynamics
- On the cosimulation of multibody systems and hydraulic dynamics
- Effect of applied force cosimulation schemes on recoupled vehicle/track problems
- An automated methodology to select functional co-simulation configurations
- Modelling and analysis of the non-iterative coupling process for co-simulation
- Predictor/corrector co-simulation approaches for solver coupling with algebraic constraints
- Two Methods of Simulator Coupling
- Signal Reconstruction via $H^{\infty}$ Sampled-Data Control Theory—Beyond the Shannon Paradigm
- H/sub ∞/ design with pole placement constraints: an LMI approach
- Error Analysis and Error Estimates for Co-simulation in FMI for Model Exchange and Co-Simulation v2.0
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