5.4
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@@ -15,24 +15,29 @@
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\acronymused{ANR}
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\acronymused{DSP}
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\newlabel{fig:fig_plot_2_dsp_complex.png}{{47}{59}{}{}{}}
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\@writefile{lof}{\contentsline {figure}{\numberline {48}{\ignorespaces Comparison of the high- and low-level simulation output. The Pearson coefficient shows a correlation of above 99\% between the two graphs.}}{59}{}\protected@file@percent }
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\newlabel{fig:fig_high_low_comparison.png}{{48}{59}{}{}{}}
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\acronymused{ANR}
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\acronymused{DSP}
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\acronymused{SNR}
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\acronymused{DSP}
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\acronymused{DSP}
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\acronymused{DSP}
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\acronymused{DSP}
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\acronymused{ANR}
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\acronymused{ANR}
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\acronymused{DSP}
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\@writefile{toc}{\contentsline {subsection}{\numberline {5.2}Computational efficiency evaluation}{59}{}\protected@file@percent }
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\@writefile{toc}{\contentsline {subsection}{\numberline {5.2}Computational efficiency evaluation}{60}{}\protected@file@percent }
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\acronymused{CI}
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\acronymused{ANR}
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\acronymused{CI}
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\@writefile{lof}{\contentsline {figure}{\numberline {48}{\ignorespaces Noise signals used to corrupt the desired signal in the computational efficiency evaluation}}{60}{}\protected@file@percent }
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\newlabel{fig:fig_noise_signals.png}{{48}{60}{}{}{}}
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\@writefile{lof}{\contentsline {figure}{\numberline {49}{\ignorespaces Noise signals used to corrupt the desired signal in the computational efficiency evaluation}}{61}{}\protected@file@percent }
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\newlabel{fig:fig_noise_signals.png}{{49}{61}{}{}{}}
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\acronymused{ANR}
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\acronymused{SNR}
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\@writefile{lof}{\contentsline {figure}{\numberline {49}{\ignorespaces Simulation of the to be expected \ac {SNR}-Gain for different noise signals and filter lengths applied to the desired signal of a male speaker. The applied delay between the signals amounts 2ms. The graphs are smoothed by a third order savigol filter.}}{61}{}\protected@file@percent }
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\@writefile{lof}{\contentsline {figure}{\numberline {50}{\ignorespaces Simulation of the to be expected \ac {SNR}-Gain for different noise signals and filter lengths applied to the desired signal of a male speaker. The applied delay between the signals amounts 2ms. The graphs are smoothed by a third order savigol filter.}}{62}{}\protected@file@percent }
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\acronymused{SNR}
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\newlabel{fig:fig_snr_comparison.png}{{49}{61}{}{}{}}
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\newlabel{fig:fig_snr_comparison.png}{{50}{62}{}{}{}}
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\acronymused{SNR}
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\acronymused{SNR}
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\acronymused{SNR}
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@@ -42,26 +47,39 @@
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\acronymused{ANR}
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\acronymused{SNR}
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\acronymused{ANR}
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\@writefile{toc}{\contentsline {subsection}{\numberline {5.3}Evaluation of the computational load}{61}{}\protected@file@percent }
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\@writefile{toc}{\contentsline {subsubsection}{\numberline {5.3.1}Full-Update implementation}{61}{}\protected@file@percent }
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\newlabel{equation_computing_calculation}{{32}{61}{}{}{}}
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\@writefile{toc}{\contentsline {subsection}{\numberline {5.3}Evaluation of the computational load for fixed implementation}{62}{}\protected@file@percent }
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\@writefile{toc}{\contentsline {subsubsection}{\numberline {5.3.1}Full-Update implementation}{62}{}\protected@file@percent }
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\newlabel{equation_computing_calculation}{{32}{63}{}{}{}}
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\acronymused{PCM}
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\acronymused{DSP}
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\acronymused{DSP}
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\newlabel{equation_cycle_budget}{{33}{62}{}{}{}}
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\newlabel{equation_cycle_budget}{{33}{63}{}{}{}}
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\acronymused{DSP}
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\newlabel{equation_load_calculation}{{34}{62}{}{}{}}
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\newlabel{equation_load_calculation}{{34}{63}{}{}{}}
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\acronymused{ANR}
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\acronymused{SNR}
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\acronymused{DSP}
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\acronymused{DSP}
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\acronymused{SNR}
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\@writefile{toc}{\contentsline {subsubsection}{\numberline {5.3.2}Reduced-update implementation}{62}{}\protected@file@percent }
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\@writefile{toc}{\contentsline {subsection}{\numberline {5.4}Summary of the performance evaluation}{62}{}\protected@file@percent }
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\@writefile{toc}{\contentsline {subsubsection}{\numberline {5.3.2}Reduced-update implementation}{63}{}\protected@file@percent }
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\acronymused{DSP}
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\acronymused{SNR}
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\@writefile{lof}{\contentsline {figure}{\numberline {51}{\ignorespaces Relative performance of the SNR-Gain, the cycles per samples and the DSP load in regard of the update rate of the ANR algorithm. The baseline is the full update variant the complex usecase. The marked dots represent the results of the simulation for an explicit setup.}}{64}{}\protected@file@percent }
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\newlabel{fig:fig_snr_reduced_update.png}{{51}{64}{}{}{}}
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\acronymused{SNR}
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\acronymused{DSP}
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\acronymused{SNR}
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\acronymused{SNR}
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\acronymused{DSP}
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\newlabel{equation_computing_calculation}{{35}{64}{}{}{}}
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\newlabel{equation_load_calculation}{{36}{64}{}{}{}}
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\acronymused{DSP}
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\acronymused{SNR}
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\@writefile{toc}{\contentsline {subsection}{\numberline {5.4}Evaluation of the computational load for error driven implementation}{64}{}\protected@file@percent }
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\@writefile{toc}{\contentsline {subsection}{\numberline {5.5}Summary of the performance evaluation}{65}{}\protected@file@percent }
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\@setckpt{chapter_05}{
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@@ -70,11 +88,11 @@
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@@ -195,7 +213,7 @@
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