Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform Synthesis

As a newly proposed high resolution computational imaging technique, Microwave Staring Correlated Imaging (MSCI) requires elaborate design of the temporal-spatial stochastic radiation fields (TSSRF). Conventional implementation of MSCI radiation source consists of multiple transmitters configuration...

Full description

Bibliographic Details
Main Authors: Jianlin Zhang, Bo Yuan, Zheng Jiang, Yuanyue Guo, Dongjin Wang
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/9/10/1627
id doaj-149d191ff4a4472da24cd09c652ff0dc
record_format Article
spelling doaj-149d191ff4a4472da24cd09c652ff0dc2020-11-25T03:54:29ZengMDPI AGElectronics2079-92922020-10-0191627162710.3390/electronics9101627Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform SynthesisJianlin Zhang0Bo Yuan1Zheng Jiang2Yuanyue Guo3Dongjin Wang4Key Laboratory of Electromagnetic Space Information, Chinese Academy of Sciences, University of Science and Technology of China, Hefei 230026, ChinaKey Laboratory of Electromagnetic Space Information, Chinese Academy of Sciences, University of Science and Technology of China, Hefei 230026, ChinaKey Laboratory of Electromagnetic Space Information, Chinese Academy of Sciences, University of Science and Technology of China, Hefei 230026, ChinaKey Laboratory of Electromagnetic Space Information, Chinese Academy of Sciences, University of Science and Technology of China, Hefei 230026, ChinaKey Laboratory of Electromagnetic Space Information, Chinese Academy of Sciences, University of Science and Technology of China, Hefei 230026, ChinaAs a newly proposed high resolution computational imaging technique, Microwave Staring Correlated Imaging (MSCI) requires elaborate design of the temporal-spatial stochastic radiation fields (TSSRF). Conventional implementation of MSCI radiation source consists of multiple transmitters configuration and simultaneous emitting scheme, which remains underutilization of the available design resources. In this paper, a time-division MSCI (TD-MSCI) method is proposed to virtually generate the TSSRF and make further use of the available design resources. Different from convention simultaneously transmitting based MSCI, the detection scheme in TD-MSCI is achieved by alternately transmitting of each transmitter, rather than simultaneous transmission of multiple transmitters. Echo enhancement is conducted to improve the SNR level of the echo waveform and to resolve the power coastdown caused by single transmitting scheme. Unused combinations of existing resources are digitally synthesized in computer rather than taking extra observations in actual physical environment. After the processing of time division observation, echo enhancement and digital waveform synthesis, extending TSSRF with better stochastic characteristics are generated, and improved imaging performance is obtained. Numerical imaging experiments and preliminary real-world imaging experiment verify the effectiveness of the proposed TD-MSCI, demonstrating that the proposed method increases the flexibility in radiation source design and decreases the detection costs.https://www.mdpi.com/2079-9292/9/10/1627microwave staring correlated imagingtime division observationecho enhancementdigital waveform synthesis
collection DOAJ
language English
format Article
sources DOAJ
author Jianlin Zhang
Bo Yuan
Zheng Jiang
Yuanyue Guo
Dongjin Wang
spellingShingle Jianlin Zhang
Bo Yuan
Zheng Jiang
Yuanyue Guo
Dongjin Wang
Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform Synthesis
Electronics
microwave staring correlated imaging
time division observation
echo enhancement
digital waveform synthesis
author_facet Jianlin Zhang
Bo Yuan
Zheng Jiang
Yuanyue Guo
Dongjin Wang
author_sort Jianlin Zhang
title Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform Synthesis
title_short Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform Synthesis
title_full Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform Synthesis
title_fullStr Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform Synthesis
title_full_unstemmed Microwave Staring Correlated Imaging Based on Time-Division Observation and Digital Waveform Synthesis
title_sort microwave staring correlated imaging based on time-division observation and digital waveform synthesis
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2020-10-01
description As a newly proposed high resolution computational imaging technique, Microwave Staring Correlated Imaging (MSCI) requires elaborate design of the temporal-spatial stochastic radiation fields (TSSRF). Conventional implementation of MSCI radiation source consists of multiple transmitters configuration and simultaneous emitting scheme, which remains underutilization of the available design resources. In this paper, a time-division MSCI (TD-MSCI) method is proposed to virtually generate the TSSRF and make further use of the available design resources. Different from convention simultaneously transmitting based MSCI, the detection scheme in TD-MSCI is achieved by alternately transmitting of each transmitter, rather than simultaneous transmission of multiple transmitters. Echo enhancement is conducted to improve the SNR level of the echo waveform and to resolve the power coastdown caused by single transmitting scheme. Unused combinations of existing resources are digitally synthesized in computer rather than taking extra observations in actual physical environment. After the processing of time division observation, echo enhancement and digital waveform synthesis, extending TSSRF with better stochastic characteristics are generated, and improved imaging performance is obtained. Numerical imaging experiments and preliminary real-world imaging experiment verify the effectiveness of the proposed TD-MSCI, demonstrating that the proposed method increases the flexibility in radiation source design and decreases the detection costs.
topic microwave staring correlated imaging
time division observation
echo enhancement
digital waveform synthesis
url https://www.mdpi.com/2079-9292/9/10/1627
work_keys_str_mv AT jianlinzhang microwavestaringcorrelatedimagingbasedontimedivisionobservationanddigitalwaveformsynthesis
AT boyuan microwavestaringcorrelatedimagingbasedontimedivisionobservationanddigitalwaveformsynthesis
AT zhengjiang microwavestaringcorrelatedimagingbasedontimedivisionobservationanddigitalwaveformsynthesis
AT yuanyueguo microwavestaringcorrelatedimagingbasedontimedivisionobservationanddigitalwaveformsynthesis
AT dongjinwang microwavestaringcorrelatedimagingbasedontimedivisionobservationanddigitalwaveformsynthesis
_version_ 1724473460583825408