A Fast Power Spectrum Sensing Solution for Generalized Coprime Sampling

Author:

Jiang Kaili1ORCID,Wang Dechang1,Tian Kailun1,Zhao Yuxin1ORCID,Feng Hancong1,Tang Bin1

Affiliation:

1. School of Information and Communication Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China

Abstract

With the growing scarcity of spectrum resources, wideband spectrum sensing is necessary to process a large volume of data at a high sampling rate. For some applications, only second-order statistics are required for spectrum estimation. In this case, a fast power spectrum sensing solution is proposed based on the generalized coprime sampling. The solution involves the inherent structure of the sensing vector to reconstruct the autocorrelation sequence of inputs from sub-Nyquist samples, which requires only parallel Fourier transform and simple multiplication operations. Thus, it takes less time than the state-of-the-art methods while maintaining the same performance, and it achieves higher performance than the existing methods within the same execution time without the need to pre-estimate the number of inputs. Furthermore, the influence of the model mismatch has only a minor impact on the estimation performance, allowing for more efficient use of the spectrum resource in a distributed swarm scenario. Simulation results demonstrate the low complexity in sampling and computation, thus making it a more practical solution for real-time and distributed wideband spectrum sensing applications.

Funder

National Defense Science and Technology Foundation Strengthening Plan 173

National Natural Science Foundation of China

Publisher

MDPI AG

Reference17 articles.

1. Rethinking autocorrelation for deep spectrum sensing in cognitive radio networks;Chae;IEEE Internet Things J.,2023

2. New paradigm of electromagnetic spectrum space situation cognition: Spectrum semantic and spectrum behavior;Zhou;J. Data Acquis. Process.,2022

3. Technology survey: A sampling of analog-to-digital converter (adc) boards;Manz;J. Electromagn. Domin.,2021

4. Recent advances on sub-nyquist sampling-based wideband spectrum sensing;Fang;IEEE Wirel. Commun.,2021

5. Pace, P.E. (2022). Developing Digital RF Memories and Transceiver Technologies for Electromagnetic Warfare, Artech House. [1st ed.].

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