On the Capacity of Scalar Gaussian Channels Subject to State Obfuscation
Name
lev-omrilev-sm-eecs-2024-thesis.pdf
Description
Thesis PDF
Size
636.22 KB
Format
Adobe PDF
Checksum (MD5)
fe3899305d24ded8ce267b3748923d42
Author(s)
Lev, Omri Yaacov
Advisor(s)
Wornell, Gregory W.
Date Issued
May 2024
Publisher
Massachusetts Institute of Technology
Abstract
The problem of communication over multiple variants of the scalar Gaussian fading channel subject to a state-obfuscation constraint imposed in the form of near independence between the channel outputs and the channel coefficients has been studied. By defining the operational capacity as the maximal achievable rate under the state obfuscation constraint, an informational counterpart is been derived, which is then proved to coincide with the operational capacity. Conditions for this capacity to be non-zero and closed-form solutions for that capacity in the high signal-to-noise ratio (SNR) limit are derived.
MIT Department
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Terms of Use
In Copyright - Educational Use Permitted
Copyright retained by author(s)
Persistent DSpace Link