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[해외논문] Field Experiment of Photonic Radar for Low-RCS Target Detection and High-Resolution Image Acquisition 원문보기

IEEE access : practical research, open solutions, v.9, 2021년, pp.63559 - 63566  

Bae, Youngseok (Agency for Defense Development, Quantum Physics Technology Directorate, Daejeon, South Korea) ,  Shin, Jinwoo (Agency for Defense Development, Quantum Physics Technology Directorate, Daejeon, South Korea) ,  Lee, Sang-Gug (Korea Advanced Institute of Science and Technology, School of Electrical Engineering, Daejeon, South Korea) ,  Kim, Hoon (Korea Advanced Institute of Science and Technology, School of Electrical Engineering, Daejeon, South Korea)

Abstract AI-Helper 아이콘AI-Helper

A photonic radar has recently received considerable interest as a next-generation radar due to its capability to generate wideband signals beyond the technical limitations of the conventional radar. In this paper, we design and implement an ${X}$-band photonic radar for a low radar cross-...

참고문헌 (48)

  1. ALTA 8 Specifications 2020 

  2. Attenuation by atmospheric gases and related effects editors 2019 

  3. Bae, Youngseok, Yi, Minwoo, Shin, Jinwoo, Lee, Sang-Gug. X-Band Photonic-Based Pulsed Radar Architecture with a High Range Resolution. Applied sciences, vol.10, no.18, 6558-.

  4. Cheng, Ran, Wei, Xie, Weilin, Dong, Yi. Photonic generation of programmable coherent linear frequency modulated signal and its application in X-band radar system. Optics express, vol.27, no.26, 37469-.

  5. Shi, Jingzhan, Zhang, Fangzheng, Ben, De, Pan, Shilong. Simultaneous Radar Detection and Frequency Measurement by Broadband Microwave Photonic Processing. Journal of lightwave technology : a joint IEEE/OSA publication, vol.38, no.8, 2171-2179.

  6. Zhang, Fangzheng, Gao, Bindong, Pan, Shilong. Photonics-based MIMO radar with high-resolution and fast detection capability. Optics express, vol.26, no.13, 17529-.

  7. Fiber Optic Measurement Techniques hui 2009 

  8. Yejun Fu, Xiupu Zhang, Hraimel, Bouchaib, Taijun Liu, Dongya Shen. Mach-Zehnder: A Review of Bias Control Techniques for Mach-Zehnder Modulators in Photonic Analog Links. IEEE microwave magazine, vol.14, no.7, 102-107.

  9. IEEE Trans Microw Theory Techn Optical millimeter-wave up-conversion employing frequency quadrupling without optical filtering lin 2009 10.1109/TMTT.2009.2015036 57 2084 

  10. Proc Eur Radar Conf (EuRAD) An ultrahigh-resolution continuous wave synthetic aperture radar with photonic-assisted signal generation and dechirp processing li 2021 13 

  11. Iezekiel, Stavros, Burla, Maurizio, Klamkin, Jonathan, Marpaung, David, Capmany, Jose. RF Engineering Meets Optoelectronics: Progress in Integrated Microwave Photonics. IEEE microwave magazine, vol.16, no.8, 28-45.

  12. Hiring a Drone Operator What You Need to Know About Flying Distance journalist 2018 

  13. Capmany, José, Novak, Dalma. Microwave photonics combines two worlds. Nature photonics, vol.1, no.6, 319-330.

  14. Pan, Shilong, Zhang, Yamei. Microwave Photonic Radars. Journal of lightwave technology : a joint IEEE/OSA publication, vol.38, no.19, 5450-5484.

  15. Ridgway, Richard W., Dohrman, Carl L., Conway, Joshua A.. Microwave Photonics Programs at DARPA. Journal of lightwave technology : a joint IEEE/OSA publication, vol.32, no.20, 3428-3439.

  16. Ghelfi, Paolo, Laghezza, Francesco, Scotti, Filippo, Serafino, Giovanni, Capria, Amerigo, Pinna, Sergio, Onori, Daniel, Porzi, Claudio, Scaffardi, Mirco, Malacarne, Antonio, Vercesi, Valeria, Lazzeri, Emma, Berizzi, Fabrizio, Bogoni, Antonella. A fully photonics-based coherent radar system. Nature, vol.507, no.7492, 341-345.

  17. Zhang, Fangzheng, Guo, Qingshui, Wang, Ziqian, Zhou, Pei, Zhang, Guoqiang, Sun, Jun, Pan, Shilong. Photonics-based broadband radar for high-resolution and real-time inverse synthetic aperture imaging. Optics express, vol.25, no.14, 16274-.

  18. Peng, Shaowen, Li, Shangyuan, Xue, Xiaoxiao, Xiao, Xuedi, Wu, Dexin, Zheng, Xiaoping, Zhou, Bingkun. High-resolution W-band ISAR imaging system utilizing a logic-operation-based photonic digital-to-analog converter. Optics express, vol.26, no.2, 1978-.

  19. Ye, Xingwei, Zhang, Fangzheng, Yang, Yue, Pan, Shilong. Photonics-based radar with balanced I/Q de-chirping for interference-suppressed high-resolution detection and imaging. Photonics research, vol.7, no.3, 265-.

  20. Gao, Bindong, Zhang, Fangzheng, Zhao, Ermao, Zhang, Daocheng, Pan, Shilong. High-resolution phased array radar imaging by photonics-based broadband digital beamforming. Optics express, vol.27, no.9, 13194-.

  21. Li, Ruoming, Li, Wangzhe, Ding, Manlai, Wen, Zhilei, Li, Yanlei, Zhou, Liangjiang, Yu, Songshan, Xing, Tonghe, Gao, Bowei, Luan, Yuchen, Zhu, Yongtao, Guo, Peng, Tian, Yu, Liang, Xingdong. Demonstration of a microwave photonic synthetic aperture radar based on photonic-assisted signal generation and stretch processing. Optics express, vol.25, no.13, 14334-.

  22. Radar Handbook skolnik 2008 

  23. Wu, Kevin J., Gregory, Thomas Stan, Moore, Julian, Hooper, Bryan, Lewis, Dexter, Zion Tsz Ho Tse. Development of an indoor guidance system for unmanned aerial vehicles with power industry applications. IET radar, sonar & navigation, vol.11, no.1, 212-218.

  24. 10.1109/RADAR.2018.8557320 

  25. Kyrkou, Christos, Theocharides, Theocharis. EmergencyNet: Efficient Aerial Image Classification for Drone-Based Emergency Monitoring Using Atrous Convolutional Feature Fusion. IEEE journal of selected topics in applied earth observations and remote sensing, vol.13, 1687-1699.

  26. Two Major Saudi Oil Installations Hit by Drone Strike and U S Blames Iran hubbard 2019 

  27. 10.21236/ADA279093 

  28. Civilian Deaths in Drone Strikes Cited in Report walsh 2013 

  29. Rahman, Samiur, Robertson, Duncan Alexander. In‐flight RCS measurements of drones and birds at K‐band and W‐band. IET radar, sonar & navigation, vol.13, no.2, 300-309.

  30. Israel Says it Struck Iranian killer Drone Sites in Syria halbfinger 2019 

  31. Jordan, Sophie, Moore, Julian, Hovet, Sierra, Box, John, Perry, Jason, Kirsche, Kevin, Lewis, Dexter, Tse, Zion Tsz Ho. State‐of‐the‐art technologies for UAV inspections. IET radar, sonar & navigation, vol.12, no.2, 151-164.

  32. Waves Innovative concepts in microwave photonics francoy 2012 4 43 

  33. Martínez-heredia, Juana M., Colodro, Francisco, Mora-Jiménez, José Luis, Remujo, Alejandro, Soriano, Joaquín, Esteban, Sergio. Development of GaN Technology-Based DC/DC Converter for Hybrid UAV. IEEE access : practical research, open solutions, vol.8, 88014-88025.

  34. Design of a continuous-wave synthetic aperture radar system with analog dechirp edwards 2009 

  35. Wang, Anle, Wo, Jianghai, Luo, Xiong, Wang, Yalan, Cong, Wenshan, Du, Pengfei, Zhang, Junkai, Zhao, Biao, Zhang, Jin, Zhu, Yong, Lan, Jiangqiao, Yu, Lan. Ka-band microwave photonic ultra-wideband imaging radar for capturing quantitative target information. Optics express, vol.26, no.16, 20708-.

  36. 10.1175/1520-0450(1976)015<0010:WEFCMP>2.0.CO;2 

  37. Wang, J., Liu, X., Zhou, Z.. Minimum-entropy phase adjustment for ISAR. IEE proceedings: Radar, sonar, and navigation, vol.151, no.4, 203-209.

  38. Abbas, G., Chan, V., Ting Yee. A dual-detector optical heterodyne receiver for local oscillator noise suppression. Journal of lightwave technology : a joint IEEE/OSA publication, vol.3, no.5, 1110-1122.

  39. IEEE Geosci Remote Sens Lett Robust ISAR range alignment via minimizing the entropy of the average range profile zhu 2009 10.1109/LGRS.2008.2010562 6 204 

  40. Chin Opt Lett Photonics-based real-time and high-resolution ISAR imaging of non-cooperative target zhang 2017 15 

  41. Fundamentals of RF and microwave noise figure measurements 2019 

  42. Albert, Chirappanath B., Huang, Chongjia, Wing Chan, Erwin Hoi. Intensity Noise Suppression Using Dual-Polarization Dual-Parallel Modulator and Balanced Detector. IEEE photonics journal, vol.10, no.2, 1-8.

  43. Micro Drone 4 0 Small Intelligent Autonomous 2020 

  44. Abtahi, M., Ayotte, S., Penon, J., Rusch, L.A.. Balanced Detection of Correlated Incoherent Signals: A Statistical Analysis of Intensity Noise With Experimental Validation. Journal of lightwave technology : a joint IEEE/OSA publication, vol.26, no.10, 1330-1338.

  45. Nitzberg, Ramon. Constant-False-Alarm-Rate Signal Processors for Several Types of Interference. IEEE transactions on aerospace and electronic systems, vol.aes8, no.1, 27-34.

  46. David, A., Brousseau, C., Bourdillon, A.. Simulations and measurements of a radar cross section of a Boeing 747‐200 in the 20-60 MHz frequency band. Radio science, vol.38, no.4, 2001RS002540-.

  47. 10.1201/b14904 

  48. Painchaud, Yves, Poulin, Michel, Morin, Michel, Têtu, Michel. Performance of balanced detection in a coherent receiver. Optics express, vol.17, no.5, 3659-.

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