CYCLOSTATIONARY DETECTION FOR OFDM OVER COGNITIVE
2016-08-23
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Research on cognitive radio systems has attracted much interest in the last 10 years. Cognitive
radio is born as a paradigm and since then the idea has seen contribution from technical
disciplines under different conceptual layers. Since then improvements on processing capabilities
have supported the current achievements and even made possible to move some of them from the
research arena to markets.
Cognitive radio implies a revolution that is even asking for changes in current business models,
changes at the infrastructure levels, changes in legislation and requiring state of the art
technology.
Spectrum sensing is maybe the most important part of the cognitive radio system since it is the
block designed to detect signal presence on the air.
This thesis investigates what cognitive radio systems require, focusing on the spectrum sensing
device. Two voice applications
radio is born as a paradigm and since then the idea has seen contribution from technical
disciplines under different conceptual layers. Since then improvements on processing capabilities
have supported the current achievements and even made possible to move some of them from the
research arena to markets.
Cognitive radio implies a revolution that is even asking for changes in current business models,
changes at the infrastructure levels, changes in legislation and requiring state of the art
technology.
Spectrum sensing is maybe the most important part of the cognitive radio system since it is the
block designed to detect signal presence on the air.
This thesis investigates what cognitive radio systems require, focusing on the spectrum sensing
device. Two voice applications
matlab
检测
系统
平稳
周期
认知
无线电
FOROFDMOVER
MCenkGursoy
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