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Signal processing / Geostatistics / Measurement uncertainty / Uncertainty / Kernel density estimation / Autocorrelation / Periodogram / Kriging / Normal distribution / Statistics / Measurement / Regression analysis


PROC. U.S. HYDRO. CONF., NEW ORLEANS, LA, 26–28 MARCH, [removed]Distribution-Free, Variable Resolution Depth Estimation with Composite Uncertainty
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Document Date: 2013-06-28 11:20:02


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City

Norfolk / San Fransisco / NEW ORLEANS / Toronto / Automatic Kriging / New York / San Jose / /

Company

John Wiley and Sons Inc / Coastal / Bias Estimation I. I NTRODUCTION S a / /

Country

United States / Northern Mariana Islands / /

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Facility

University of New Hampshire / Cell Centre / /

IndustryTerm

data processing method / http /

Organization

Naval Hydrographic Office / United Nations / Hydrographic Society of America / Ocean Mapping and NOAAUNH Joint Hydrographic Center / Cell Centre / Center for Coastal and Ocean Mapping / Instrumentation / Systems and Automation Society / Canadian Hydrographic Service / University of New Hampshire / National Oceanic and Atmospheric Administration / Chase Ocean Engineering Lab / /

Person

G. Imahori / J. Hiebert / B. Calder / G. Rice / A. A. Armstrong / J. Beaudoin / B. R. Calder / J. V. Gardner / Morgan Kaufmann / /

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Position

author / /

ProgrammingLanguage

MATLAB / /

ProvinceOrState

Louisiana / New Hampshire / /

Region

Southern Mississippi / /

Technology

CHARM algorithm / proposed algorithm / CUBE algorithm / depth estimation algorithm / CHRT algorithm / /

URL

http /

SocialTag