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This paper is focused on adaptive feedback cancellation (AFC) where the goal is to adaptively model the acoustic feedback path and estimate the feedback signal, which is then subtracted from the microphone signal.
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The head losses in the flow path have been estimated from static pressure measurements made using a set of manometers placed in the recirculating flow path, and estimates of these head loss coefficients in three-phase flow have also been calculated using an extension of existing correlations for single-phase and two-phase flow.
It calculates the shortest distance from the packet's destination to the nearest point of the vehicles' path and estimates the arrival time of a packet to the destination.
The final model with standardized estimated coefficients of each path and estimates of squared multiple correlations (R) of each observed variable is shown in Figure 2.
In phase 2, a groundwater flow model was used to identify groundwater flow paths and estimate contaminant travel times.
On the other hand we will study the behaviour on the level of single paths and estimate the probability that a specific path exceeds a given threshold.
We recorded the echolocation calls of the bats in all conditions using multi-microphone arrays to later measure call duration, call period, and frequency components, and to reconstruct flight paths and estimate call intensity.
The performance of this method was evaluated by simulating walk paths and estimating their radiation dose rates in a hypothetical nuclear facility, and the simulation results were compared with those derived from Dijsktra's algorithm under various radioactive environments.
The s(n) and ( hat{s}(n) ) are the impulse responses of the secondary path and its estimate, respectively.
With the approximate shortest path, the proposed algorithm enables each normal node to measure how much the shortest path to an anchor is detoured from the direct path and to estimate the distance more accurately.
In addition, for simplicity, we assume the secondary path and the estimated secondary path are equal ( boldsymbol{S} = widehat{boldsymbol{S}}=left[begin{array}{ccc}hfill 0.7756hfill & hfill 0.5171hfill & hfill -0.3620hfill end{array}right] ).
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CEO of Professional Science Editing for Scientists @ prosciediting.com