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The implementation results of the Pulse-Doppler radar signal processing chain use case on the proposed parallel machine using the straightforward model before optimization are presented in Figure 26.
Previous work [3, 21 25] using the straightforward model to distribute a radar application on a parallel machine based on a RapidIO interconnect have achieved a parallel efficiency that does not exceed 40%.
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The implementation results using the optimized straightforward model are presented in Figure 27.
We will start by describing the straightforward model used to map the Pulse-Doppler radar processing chain on the parallel machine.
Then, we introduce the straightforward model used to distribute the Pulse-Doppler radar signal processing chain on the parallel machine, and we present all optimizations that we have proposed to reduce the communication time by SRIO.
Figure 15 Data flow in the straightforward model.
We used a straightforward model to distribute the processing on the parallel machine.
In order to distribute the Pulse-Doppler radar signal processing chain algorithm on the proposed parallel machine, we have used a straightforward model (Figure 15) [3, 21 25].
Perhaps a more straightforward approach involves using the model to accommodate multiple-knockout experiments (i.e. those involving multiple inactivated genes in each strain).
"Using the same model.
A straightforward calculation of the fwhm using the model of eq 2 confirms this.
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