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In this, individual finite element analyses are performed for each subsystem using, here, the fixed interface method.
We consider steady Stokes equations in the free region, coupled across a fixed interface to Darcy equations in the porous substrate.
Development of the forward propagation approach then allows propagation of correlation uncertainty in the reverse direction from the free substructure into the fixed interface based Craig Bampton representation.
It is also found that the model with fixed interface leads to a perception of reinforced soil acting as a relatively rigid block, which results into an unconservative design from overall deformation perspective.
In preparation for future synthesized system level uncertainty analysis, a framework is presented for propagating analytical model uncertainty from a fixed interface Craig Bampton substructure representation into a free free substructure.
This hybrid model has been developed to combine the advantages of the fixed interface method, known popularly as the Craig Bampton approach and the free interface method, known as the Craig Chang technique.
Similar(41)
In order to make an optimal channel assignment for the fixed receiving interface, each ad hoc node senses periodically a radio spectrum on both interfaces and estimates PN traffic workloads.
The color and number near the fixed receiving interface of each node in Figure 1 represent an operating channel.
Based on the sensed information, it selects a channel that is less occupied by external traffic caused by PNs for the fixed receiving interface.
Similar to this trend of adaptive channel assignment, we propose a long-term channel reselection method for the fixed receiving interface with careful consideration not only of in-network node population but also of interference from out-of-network primary nodes.
In our target cognitive multi-channel network, node channel assignment for the fixed receiving interface is completed prior to a fair rate control algorithm, and thus, ω l is easily obtained from spectrum sensing of the pre-assigned channel by the destination of link l.
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