Cite

Gladilkin, A.H., et al., Scale Installation for Radiobiological Researches (Design and Results of Experimental Researches), Energoatom, Moscow (1981) 60 pp. (in Russian). RADIOACTIVE SOURCES IN THE RUSSIAN ECONOMY 469 470 NESTEROV et al. GladilkinA.H. Scale Installation for Radiobiological Researches (Design and Results of Experimental Researches) Energoatom Moscow 1981 60 (in Russian). RADIOACTIVE SOURCES IN THE RUSSIAN ECONOMY 469 470 NESTEROV et al. Search in Google Scholar

Pugachev, A.A., et al., Radioisotope Devices of Technological Control: Directory, Atomizdat, Moscow (1980) 95 pp. (in Russian). PugachevA.A. Radioisotope Devices of Technological Control: Directory Atomizdat Moscow 1980 95 (in Russian). Search in Google Scholar

Stadnikia K, Henderson K, Martin A, et al. Data fusion for a vision-aided radiological detection system: Calibration algorithm performance[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2018, 890: 8–17. StadnikiaK HendersonK MartinA Data fusion for a vision-aided radiological detection system: Calibration algorithm performance[J] Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 2018 890 8 17 Search in Google Scholar

Redus R, Squillante M, Gordon J, et al. A combined video and gamma ray imaging system for robots in nuclear environments[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1994, 353(1–3): 324–327. RedusR SquillanteM GordonJ A combined video and gamma ray imaging system for robots in nuclear environments[J] Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1994 353 1–3 324 327 Search in Google Scholar

Ducros C, Hauser G, Mahjoubi N, et al. RICA: A tracked robot for sampling and radiological characterization in the nuclear field[J]. Journal of Field Robotics, 2017, 34(3): 583–599. DucrosC HauserG MahjoubiN RICA: A tracked robot for sampling and radiological characterization in the nuclear field[J] Journal of Field Robotics 2017 34 3 583 599 Search in Google Scholar

Chen Y, Cai H, Chen Z, et al. Using multi-robot active olfaction method to locate time-varying contaminant source in indoor environment[J]. Building and Environment, 2017, 118: 101–112. ChenY CaiH ChenZ Using multi-robot active olfaction method to locate time-varying contaminant source in indoor environment[J] Building and Environment 2017 118 101 112 Search in Google Scholar

Ardiny H, Witwicki S, Mondada F. Autonomous Exploration for Radioactive Hotspots Localization Taking Account of Sensor Limitations[J]. Sensors, 2019, 19(2): 292. ArdinyH WitwickiS MondadaF Autonomous Exploration for Radioactive Hotspots Localization Taking Account of Sensor Limitations[J] Sensors 2019 19 2 292 Search in Google Scholar

Alpay M E, Shor M H. Model-based solution techniques for the source localization problem[J]. Control Systems Technology IEEE Transactions on, 2000, 8(6):895–904. AlpayM E ShorM H Model-based solution techniques for the source localization problem[J] Control Systems Technology IEEE Transactions on 2000 8 6 895 904 Search in Google Scholar

Ristic B, Morelande M, Gunatilaka A, et al. Search for a Radioactive Source: Coordinated Multiple Observers[C]//Intelligent Sensors, Sensor Networks and Information, 2007. ISSNIP 2007. 3rd International Conference on IEEE, 2007:239–244. RisticB MorelandeM GunatilakaA Search for a Radioactive Source: Coordinated Multiple Observers[C] Intelligent Sensors, Sensor Networks and Information, 2007. ISSNIP 2007. 3rd International Conference on IEEE 2007 239 244 Search in Google Scholar

Hamideen M S, Sharaf J M, Alkam O. Radioactive point source localization in one, two, and three dimensions within a bulky medium[J]. Applied Radiation & Isotopes, 2010, 68(6):1160–1168. HamideenM S SharafJ M AlkamO Radioactive point source localization in one, two, and three dimensions within a bulky medium[J] Applied Radiation & Isotopes 2010 68 6 1160 1168 Search in Google Scholar

Wacholder, E., E. Elias, and Y. Merlis, “Artificial neural networks optimization method for radioactive source localization”, Nuclear Technology, vol. 110, no. 2, pp. 228–237, 1995.J. WacholderE. EliasE. MerlisY. “Artificial neural networks optimization method for radioactive source localization” Nuclear Technology 110 2 228 237 1995 J. Search in Google Scholar

Presler O, German U, Alfassi Z B. Radioactive point source localization in a bulky volume[J]. Nuclear Instruments & Methods in Physics Research, 2005, 547(2):628–637. PreslerO GermanU AlfassiZ B Radioactive point source localization in a bulky volume[J] Nuclear Instruments & Methods in Physics Research 2005 547 2 628 637 Search in Google Scholar

Vilim R, Klann R, RadTrac: A system for detecting, localizing, and tracking radioactive sources in real time[J], Nuclear Technology, vol. 168, no. 1, pp. 61–73, 2009. VilimR KlannR RadTrac: A system for detecting, localizing, and tracking radioactive sources in real time[J] Nuclear Technology 168 1 61 73 2009 Search in Google Scholar

Shixiang Ni. Single Robot Radiation Field Source Seeking Algorithms for Outdoor Environment [J]. Machinery & Electronics, 2015(9):67–71. ShixiangNi Single Robot Radiation Field Source Seeking Algorithms for Outdoor Environment [J] Machinery & Electronics 2015 9 67 71 Search in Google Scholar

Zhang M, Xu Z H, liang Zou S, et al. Heuristic Search for an Unknown Nuclear Source[J]. International Journal of Simulation – Systems, Science & Technology, 2015, 16(2). ZhangM XuZ H liang ZouS Heuristic Search for an Unknown Nuclear Source[J] International Journal of Simulation – Systems, Science & Technology 2015 16 2 Search in Google Scholar

Liu Z. Reconstruction of urban radiation landscape using machine learning methods[D]. University of Illinois at Urbana-Champaign, 2019. LiuZ Reconstruction of urban radiation landscape using machine learning methods[D] University of Illinois at Urbana-Champaign 2019 Search in Google Scholar

Gong P, Tang X B, Huang X, et al. Locating lost radioactive sources using a UAV radiation monitoring system[J]. Applied radiation and isotopes, 2019, 150: 1–13. GongP TangX B HuangX Locating lost radioactive sources using a UAV radiation monitoring system[J] Applied radiation and isotopes 2019 150 1 13 Search in Google Scholar

Nuclear Technology Teaching and Research Department. Radiation Diametry [M]. Hengyang: University of South China, 2015:82. Nuclear Technology Teaching and Research Department Radiation Diametry [M] Hengyang University of South China 2015 82 Search in Google Scholar

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