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Finally, we have used the AOL's file in order to simulate the behavior of our scheme with real queries which have been generated by real users.
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We investigate the behavior of our proposed scheme under two attack scenarios: Packet Dropping and Route Error attacks in dense network configurations.
Eventually, besides analyzing the robustness of the proposed approach against non-malicious attacks such as those performed by means of TMOs, we have also evaluated the behavior of our watermarking schemes against malicious signal processing attacks carried out on the marked HDR images, still considering a system configuration with P=17, Δ=2, [h max,h min]=[ 1,5], and C=3.
We now investigate the error probability behavior of this scheme.
We also examined the behavior of the scheme for different values of k.
Finally, we assess the good behavior of the scheme when approximating vanishing phase solutions.
Figure 5 illustrates the behavior of this scheme in the first 200 generations of a test problem.
A test model from the literature is used to verify the correct behavior of the scheme.
The asymptotic behavior of the scheme in reconstructing smooth and piecewise smooth functions is demonstrated.
Cooperative multicast scheme which allows the users to function as relays is presented in [18], and the secure outage behavior of this scheme is studied.
We present a full nonlinear energy-dependent asymptotic analysis of the behavior of this scheme in the thick equilibrium-diffusion limit.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com