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The scheduling and placement has been carried out on all five In vitro diagnostics
using module library mentioned in Table 2. We assume input operation time of One
second. Table 3 displays the detailed results for all five examples. Table 4 shows the
comparative results for bioassay execution time obtained using the proposed
technique and the ones used in [13].
Fig. 5. A flowchart for the proposed scheduling and placement technique
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Conclusion
In this paper we have proposed route based synthesis and placement technique to
employed for execution of Bioassay with a DMFB. We used route based
reconfigurability for resources to be reconfigurable resources are assigned with fixed
locations. The results show major improvements in terms of areas and execution time
for bioassays through application of our algorithms. In table 4 it has been noticed that
improvement is more pronounced in comparison to other scheduling methods [13]
with increase in problem size. However the algorithm needs to be modified for larger
sequencing graphs with higher number of levels as resource sharing for
reconfigurable operation may become unmanageable with increase in number of
levels beyond a certain value.
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