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The achieved area savings are presented as a function of a number of most significant fault-tolerant bits.
For analyzing the transient stability of a power system incorporating with wind farms, the most significant factors are the fault probabilistic model and the stochastic output power of the wind farms.
The process formed several seismic faults, with most significant among them being the Ilirska Bistrica – Rijeka – Senj fault, which was the source of several significant earthquakes in past centuries.
As expected, the higher level of degradation (i.e., fault case 3) causes the most significant reduction in the SINR50 during the fault stage of the simulation.
By utilizing this index, the optimal resonance band where the fault impulses are most significant could be accurately determined.
In this case, this is most significant in the horizontal dip (y) direction of the fault, and the error grows gradually with increasing time even after the termination of the fault rupture.
The method is demonstrated for the BP array in the following way: only the most significant bits of the output word are made fault-tolerant.
The most significant statistical properties which are exclusive for each type of fault are proposed here as classification criteria.
The most significant feature of crustal earthquakes is the seismicity along the Sagaing Fault (Figs. 5 and 8).
Permanent ground displacement (PGD) caused by surface faulting is considered as one of the most significant hazards affecting buried pipelines.
A transient analysis is proposed to evaluate the spectral content of the fault-generated traveling wave, thus identifying its most significant frequency components.
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