Parameter Estimation Inspired by Temperature Measurements for a Chemotactic Model of Honeybee Thermoregulation
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-32412-3_4
Reference20 articles.
1. Alifanov, O.M., Artioukhine, E.A., Rumyantsev, S.V.: Extreme Methods for Solving Ill-posed problems with Applications to Inverse Heat Transfer Problems, Begell House, New York - Wallingford (U.K.) (1995)
2. Atanasov, A.Z., Koleva, M.N., Vulkov, L.G.: Numerical optimization identification of a Keller-Segel model for thermoregulation in honey bee colonies in winter, accepted in Springer book series CCIS (2023)
3. Atanasov, A.Z., Koleva, M.N., Vulkov, L.G.: Numerical analysis of thermoregulation in honey bee colonies in winter based on sign-changing chemotactic coefficient model, accepted in Springer Proceedings in Mathematics & Statistics (2023)
4. Bastaansen, R., Doelman, A., van Langevede, F., Rottschafer, V.: Modeling honey bee colonies in winter using a Keller-Segel model with a sign-changing chemotactic coefficient. SIAM J. Appl. Math. 80(20), 839–863 (2020)
5. Chavent, G.: Nonlinear Least Squares for Inverse Problems: Theoretical Foundation and Step-by Guide for Applications. Springer (2009). https://doi.org/10.1007/978-90-481-2785-6
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