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The pressure schedule, the overall forming time and the final thickness distribution in the formed component were calculated.
Open image in new window Fig. 7 Injection well's rate schedule for target run Open image in new window Fig. 8 Production wells' pressure schedule for target run.
Open image in new window Fig. 3 Injection well's rate schedule for training run Open image in new window Fig. 4 Production wells' pressure schedule for training run Open image in new window Fig. 5 Selected eigenvalues for pressure Open image in new window Fig. 6 Selected eigenvalues for saturation.
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It is shown that the TPWL model provides accurate results when the controls (bottom hole pressures of the production wells in this case) applied in test simulations are within the general range of the controls applied in the training runs, even though the well pressure schedules for the test runs can differ significantly from those of the training runs.
In this paper, we propose a distributed framework that combines opportunistic routing with back pressure scheduling and derive the sufficient condition for our framework to achieve throughput optimality.
Think of it as an investment with the greatest return in the least amount of time, a kind of super-efficient sleep that fits nicely in a high-pressure schedule: say, between business meetings or in the minutes before a game.
However, there is a lack of fundamental understanding on the interactions between the incentive mechanisms and the underlying protocols (e.g., shortest-path routing, ETX routing or back-pressure scheduling), and whether integration of these protocols will lead to a robust network, i.e., networks can sustain a given traffic workload.
We prove that VBR can maintain back-pressure scheduling's throughput optimality.
To ease the understanding, in here, we briefly introduce how back-pressure scheduling works as follows.
The back-pressure scheduling algorithm was proposed in [1], and it works as follows.
The second mechanism is backward-pressure scheduling which restricts the forwarding node from sending more packets to its downstream node.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com