doctoralThesis
Uso de correntropia na generalização de funções cicloestacionárias e aplicações para a extração de características de sinais modulados
Fecha
2015-09-11Registro en:
FONTES, Aluisio Igor Rêgo. Uso de correntropia na generalização de funções cicloestacionárias e aplicações para a extração de características de sinais modulados. 2015. 85f. Tese (Doutorado em Engenharia Elétrica e de Computação) - Centro de Tecnologia, Universidade Federal do Rio Grande do Norte, Natal, 2015.
Autor
Fontes, Aluisio Igor Rêgo
Resumen
Information extraction is a frequent and relevant problem in digital signal processing.
In the past few years, different methods have been utilized for the parameterization of
signals and the achievement of efficient descriptors. When the signals possess statistical
cyclostationary properties, the Cyclic Autocorrelation Function (CAF) and the Spectral
Cyclic Density (SCD) can be used to extract second-order cyclostationary information.
However, second-order cyclostationary information is poor in nongaussian signals, as the
cyclostationary analysis in this case should comprise higher-order statistical information.
This paper proposes a new mathematical tool for the higher-order cyclostationary analysis
based on the correntropy function. Specifically, the cyclostationary analysis is revisited
focusing on the information theory, while the Cyclic Correntropy Function (CCF) and
Cyclic Correntropy Spectral Density (CCSD) are also defined. Besides, it is analytically
proven that the CCF contains information regarding second- and higher-order cyclostationary
moments, being a generalization of the CAF. The performance of the aforementioned
new functions in the extraction of higher-order cyclostationary characteristics is analyzed
in a wireless communication system where nongaussian noise exists.