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author Lee, Y. W.
Jordan, K. L., Jr.
Schetzen, M.
Zames, G. D.
author_facet Lee, Y. W.
Jordan, K. L., Jr.
Schetzen, M.
Zames, G. D.
author_sort Lee, Y. W.
collection MIT
description Contains research objectives and reports on three research projects.
first_indexed 2024-09-23T14:47:04Z
format Technical Report
id mit-1721.1/53371
institution Massachusetts Institute of Technology
language English
last_indexed 2024-09-23T14:47:04Z
publishDate 2010
publisher Research Laboratory of Electronics (RLE) at the Massachusetts Institute of Technology (MIT)
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spelling mit-1721.1/533712019-04-12T09:58:03Z Statistical Communication Theory Lee, Y. W. Jordan, K. L., Jr. Schetzen, M. Zames, G. D. Statistical Communication Theory Characterization of Random Signals with an Application to Nonstationary Linear Systems Gravitational Fields Realizability of Nonlinear Filters and Feedback Systems Contains research objectives and reports on three research projects. 2010-03-31T21:31:42Z 2010-03-31T21:31:42Z 1960-01-15 Technical Report RLE_QPR_056_XII http://hdl.handle.net/1721.1/53371 en Massachusetts Institute of Technology, Research Laboratory of Electronics, Quarterly Progress Report, January 15, 1960 Statistical Communication Theory Massachusetts Institute of Technology. Research Laboratory of Electronics. Quarterly Progress Report, no. 56 Copyright (c) 2008 by the Massachusetts Institute of Technology. All rights reserved. application/pdf Research Laboratory of Electronics (RLE) at the Massachusetts Institute of Technology (MIT)
spellingShingle Statistical Communication Theory
Characterization of Random Signals with an Application to Nonstationary Linear Systems
Gravitational Fields
Realizability of Nonlinear Filters and Feedback Systems
Lee, Y. W.
Jordan, K. L., Jr.
Schetzen, M.
Zames, G. D.
Statistical Communication Theory
title Statistical Communication Theory
title_full Statistical Communication Theory
title_fullStr Statistical Communication Theory
title_full_unstemmed Statistical Communication Theory
title_short Statistical Communication Theory
title_sort statistical communication theory
topic Statistical Communication Theory
Characterization of Random Signals with an Application to Nonstationary Linear Systems
Gravitational Fields
Realizability of Nonlinear Filters and Feedback Systems
url http://hdl.handle.net/1721.1/53371
work_keys_str_mv AT leeyw statisticalcommunicationtheory
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AT schetzenm statisticalcommunicationtheory
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