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- W2018991860 abstract "Recently, a closed-form approximated expression was derived by the same author for the achievable residual intersymbol interference (ISI) case that depends on the step-size parameter, equalizer's tap length, input signal statistics, signal to noise ratio (SNR), and channel power and is valid for fractional Gaussian noise (fGn) input where the Hurst exponent is in the region of <svg style=vertical-align:-1.29163pt;width:82.224998px; id=M1 height=11.85 version=1.1 viewBox=0 0 82.224998 11.85 width=82.224998 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,11.113)><path id=x30 d=M241 635q53 0 94 -28.5t63.5 -76t33.5 -102.5t11 -116q0 -58 -11 -112.5t-34 -103.5t-63.5 -78.5t-94.5 -29.5t-95 28t-64.5 75t-34.5 102.5t-11 118.5q0 58 11.5 112.5t34.5 103t64.5 78t95.5 29.5zM238 602q-32 0 -55.5 -25t-35.5 -68t-17.5 -91t-5.5 -105
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l-26 -65h-233z /></g><g transform=matrix(.017,-0,0,-.017,24.966,11.113)><path id=x2264 d=M531 71l-474 214v50l474 215v-56l-416 -184l416 -183v-56zM531 -40h-474v50h474v-50z /></g><g transform=matrix(.017,-0,0,-.017,39.67,11.113)><path id=x1D43B d=M865 650q-1 -4 -4 -14t-4 -14q-62 -5 -77 -19.5t-29 -82.5l-74 -394q-12 -61 -0.5 -77t75.5 -21l-6 -28h-273l8 28q64 5 82 21t29 76l36 198h-380l-37 -197q-11 -64 0.5 -78.5t79.5 -19.5l-6 -28h-268l6 28q60 6 75.5 21.5t26.5 76.5l75 394q13 66 2 81.5t-77 20.5l8 28
h263l-6 -28q-58 -5 -75.5 -21t-30.5 -81l-26 -153h377l29 153q12 67 2 81t-74 21l5 28h268z /></g><g transform=matrix(.017,-0,0,-.017,59.303,11.113)><path id=x3C d=M512 -3l-437 233v51l437 233v-58l-378 -200v-2l378 -199v-58z /></g><g transform=matrix(.017,-0,0,-.017,74.007,11.113)><path id=x31 d=M384 0h-275v27q67 5 81.5 18.5t14.5 68.5v385q0 38 -7.5 47.5t-40.5 10.5l-48 2v24q85 15 178 52v-521q0 -55 14.5 -68.5t82.5 -18.5v-27z /></g> </svg>. But this expression was obtained for the blind adaptive case and cannot be applied to the nonblind adaptive version. Up to now, the achievable residual ISI for the non-blind adaptive case could be obtained only via simulation. In this paper, we derive a closed-form approximated expression (or an upper limit) for the residual ISI obtained by non-blind adaptive equalizers valid for fractional Gaussian noise (fGn) input where the Hurst exponent is in the region of <svg style=vertical-align:-1.29163pt;width:82.224998px; id=M2 height=11.85 version=1.1 viewBox=0 0 82.224998 11.85 width=82.224998 xmlns:xlink=http://www.w3.org/1999/xlink xmlns=http://www.w3.org/2000/svg> <g transform=matrix(.017,-0,0,-.017,.062,11.113)><use xlink:href=#x30/></g><g transform=matrix(.017,-0,0,-.017,8.222,11.113)><use xlink:href=#x2E/></g><g transform=matrix(.017,-0,0,-.017,12.098,11.113)><use xlink:href=#x35/></g><g transform=matrix(.017,-0,0,-.017,24.966,11.113)><use xlink:href=#x2264/></g><g transform=matrix(.017,-0,0,-.017,39.67,11.113)><use xlink:href=#x1D43B/></g><g transform=matrix(.017,-0,0,-.017,59.303,11.113)><use xlink:href=#x3C/></g><g transform=matrix(.017,-0,0,-.017,74.007,11.113)><use xlink:href=#x31/></g> </svg>. This new obtained expression depends on the step-size parameter, equalizer's tap length, input signal statistics, SNR, channel power, and the Hurst exponent parameter. Simulation results indicate that there is a high correlation between the calculated results (obtained from the new obtained expression for the residual ISI) and those obtained from simulating the system." @default.
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- W2018991860 date "2013-01-01" @default.
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- W2018991860 title "Residual ISI Obtained by Nonblind Adaptive Equalizers and Fractional Noise" @default.
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