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To simulate inter-link correlation among different MSs properly, the simulator simultaneously generates, in a given simulation run, the radio channel snapshots for all the MSs.
Additionally, the dependency graph is used to ensure that data requirements are consistent between all processes in a given simulation.
Note that, in practice, +∞ can be represented by the largest countable number available (e.g., 264 - 1) in a given simulation platform.
In addition, from an energetic variational approach, it can be shown that an important quantity to preserve in a given simulation is the energy law.
The issue of numerical uncertainty addresses the development of methods to define the magnitude of error or to bound the error in a given simulation.
In previous studies, HKES was based primarily on single-objective optimization, such that only one optimal design was obtained in a given simulation run.
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Each column in each file represents the ON/OFF states for one node (including external inputs) in the network, where '1' codes the ON state and '0' codes the OFF, whereas the rows represent the state of that node in time t of a given simulation.
In the absence of an analytical description for the HDE, it can be computed numerically by generating, in any moment in time, multiple branches of a given simulation, corresponding to different values of the conductance of an applied synaptic event.
Equation (1) shows the cost of a given simulation in a local computer: (1) C local x = C e x + C m x + C c x, where Clocal x is the result of adding: (i) C e x : energy consumption costs: (2) C e x = T local x · e x · p e · m, where e x is the energy consumption for a given ligand x and p e is the energy price.
Large f values can be used to generate a rough contrast model for a given simulation cell in very short computation times.
(A quick tutorial on how to use the Bio-Logic Builder to construct models is available at http://www.thecellcollective.org) Once the bio-logic is defined for all species in a given model, in silico simulations and analyses can be conducted (step #3 in Figure 2).
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