Strict requirements implementation (SRI) for magnetic stealth (MS) of elongated energy-saturated technical objects (EESTO) – such as satellites, naval vessel and submarines (SNVS) determined by mathematical models (MM) adequacy to real magnetic field signatures (MFS). Method for MFS prediction metamodel design for EESTO with magnetic characteristics uncertainties (MCU) based on geometric inverse magnetostatics problems solution (GIMSPS) developed. MFS metamodel spatial extended spheroidal harmonics (SESH) calculated in prolate spheroidal coordinate system (PSCS) as GIMSPS. Prediction far EESTO MFS magnitude based on near MFS measurements calculated as vector game solution (VGS) by COMSOL Multiphysics software package based on hybrid optimization algorithm (HOA) using particle swarm optimization (PSO) and sequential quadratic programming (SQP) to calculated global optimum point from Pareto optimal solutions (POS) taking into account binary preference relations (BPR). Results of prediction far EESTO MFS magnitude with MCU designed metamodel in SESH form in PSCS are given.
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Language:
English
Type
Refereed Journal Publications
Firstpage Number
1
Lastpage Number
10
Keywords
energy-saturated elongated technical objects, magnetic field, metamodel, magnetic stealth, prolate spheroidal coordinate system, extended spheroidal spatial harmonics, prediction, measurements, uncertainty
In: Shukla, S., Sayama, H., Tiwari, K., George, J.P., Kureethara, J.V. (eds) Data Science and Security. IDSCS 2025. Lecture Notes in Networks and Systems
Volume
1947
Year of publishing
2026
Citation
DSTU
Kuznetsov B., Bovdui I., Nikitina T., Voliansky R., Sushchenko O., Averyanova Yu., Solomentsev O., Holubnychyi O., Zaliskyi M., Bezkorovainyi Y., Cherednichenko K., Sokolova O., Ivannikova V., Ostroumov I.V.Unmanned Underwater Vehicle Magnetic Stealth Prediction Multiobjective Design. In: Shukla, S., Sayama, H., Tiwari, K., George, J.P., Kureethara, J.V. (eds) Data Science and Security. IDSCS 2025. Lecture Notes in Networks and Systems. . № 1947. P. 1-10 DOI: 10.1007/978-3-032-24360-7_1.
IEEE
B. Kuznetsov et al., "Unmanned Underwater Vehicle Magnetic Stealth Prediction Multiobjective Design," in In: Shukla, S., Sayama, H., Tiwari, K., George, J.P., Kureethara, J.V. (eds) Data Science and Security. IDSCS 2025. Lecture Notes in Networks and Systems, vol. 1947, , pp. 1-10, doi:10.1007/978-3-032-24360-7_1.
Harvard
Kuznetsov B., Bovdui I., Nikitina T., Voliansky R., Sushchenko O., Averyanova Yu., Solomentsev O., Holubnychyi O., Zaliskyi M., Bezkorovainyi Y., Cherednichenko K., Sokolova O., Ivannikova V., and Ostroumov I.V., 2026. Unmanned Underwater Vehicle Magnetic Stealth Prediction Multiobjective Design. In In: Shukla, S., Sayama, H., Tiwari, K., George, J.P., Kureethara, J.V. (eds) Data Science and Security. IDSCS 2025. Lecture Notes in Networks and Systems, 1947 (pp. 1-10).
Springer
Kuznetsov, B., Bovdui, I., Nikitina, T., Voliansky, R., Sushchenko, O., Averyanova, Yu., Solomentsev, O., Holubnychyi, O., Zaliskyi, M., Bezkorovainyi, Y., Cherednichenko, K., Sokolova, O., Ivannikova, V., Ostroumov, I.V.: Unmanned Underwater Vehicle Magnetic Stealth Prediction Multiobjective Design. In: Shukla, S., Sayama, H., Tiwari, K., George, J.P., Kureethara, J.V. (eds) Data Science and Security. IDSCS 2025. Lecture Notes in Networks and Systems 1947, 1-10 (2026). doi:10.1007/978-3-032-24360-7_1.