Method and system of cognitive radio spectrum sensing based on Gabor algorithm

A cognitive radio and spectrum sensing technology, which is applied in the field of cognitive radio spectrum sensing based on the Gabor algorithm, can solve the problems of undetectable signals, increased error probability, and difficulties in actual detection, etc.

Active Publication Date: 2013-07-24
INNER MONGOLIA UNIVERSITY
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Problems solved by technology

The spectrum detection algorithm used in the prior art includes: matched filter detection method, energy detection method, etc., the flow chart of the energy detection algorithm is as follows figure 1 As shown, because the energy detection algorithm of the prior art is simple to implement and has a wide range of implementation, the present invention is based on the energy detection algorithm, but the existing energy detection algorithm has the following defects: ① cannot provide stable and reliable Detection performance
For example, when the signal-to-noise ratio is greater than -20dB, a certain detection probability can still

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  • Method and system of cognitive radio spectrum sensing based on Gabor algorithm
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  • Method and system of cognitive radio spectrum sensing based on Gabor algorithm

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[0060] The method of the present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0061] The scheme of the present invention is specifically explained as follows:

[0062] The energy detection in the prior art uses the average power of a signal within a period of time as a test statistic, and compares it with a preset threshold to determine whether there is a main signal in the frequency band. Since the energy sensing algorithm in the prior art is simple to implement and has a wide application range, the method provided by the present invention is improved on the basis of the existing energy sensing algorithm. The improved energy sensing algorithm is described in detail below. The improved algorithm provided by the present invention is embodied in: 1. on the Shannon sampling frequency. ②The improved method is more accurate in the calculation of signal energy after the signal is processed by different samples. The s...

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Abstract

The invention provides a method and a system of cognitive radio spectrum sensing based on a Gabor algorithm. The method of the cognitive radio spectrum sensing based on the Gabor algorithm comprises the following steps: step 101: sensing the conduction of sampling processing of detected continuous signals received by a user through the Gabor algorithm to obtain a discrete-time signal; step 102: calculating the Gabor coefficient of the discrete-time signal and obtaining the module value of the Gabor coefficient to be used as the energy of the detected signal; step 103: if the module value of the obtained Gabor coefficient is larger than a pre-set judging threshold, judging that a main user exists in the detected frequency range; if the module value of the obtained Gabor coefficient is smaller than the pre-set judging threshold, judging that no main user exists in the detected frequency range. When the Shannon principle is adopted for sampling, the Gabor algorithm is combined, and the sampling adopting the Gabor algorithm needs to meet that TOmega<=2pi or MN<=N1, T is a time sampling period and Omega is a frequency sampling period. On the basis of traditional energy detection, the Gabor algorithm is imported for improving the detection accuracy of the main user, , the method of the cognitive radio spectrum sensing based on the Gabor algorithm can effectively improve the accuracy of a detection result especially in low signal to noise ratio.

Description

technical field [0001] The present invention relates to a cognitive radio spectrum sensing method, in particular to a fast and accurate Gabor algorithm-based cognitive radio spectrum sensing technology, that is, the present invention provides a Gabor algorithm-based cognitive radio spectrum sensing method and system. Background technique [0002] In cognitive radio systems, spectrum sensing is the most important and the first technical problem to overcome. Only when effective spectrum sensing is carried out, can dynamic allocation of spectrum and application of spectrum management be carried out based on the results of spectrum sensing, and will also provide a basis for the flexible and intelligent work of cognitive radio. [0003] The current communication technology service model has shifted to broadband services such as video, audio and high-definition pictures, and the lack of wireless spectrum resources has become one of the bottlenecks in the promotion of high-perform...

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Application Information

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IPC IPC(8): H04B17/00H04B17/382
Inventor 王树彬陈宏刘慧琴刘散日那王洪月李树华
Owner INNER MONGOLIA UNIVERSITY
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