References
- Al Labadi, L. (2015). Some refinements on Fedorov’s algorithms for constructing D-optimal designs. Brazilian Journal of Probability and Statistics, 29(1), 53-70.10.1214/13-BJPS228
- Atanazevich, V. I. (2000). Drying food. Reference Manual. Moscow: DeLi.
- Atkinson, A. C., & Donev, A. N. (1989). The construction of exact D-optimum experimental designs with application to blocking response surface designs. Biometrika, 76(3), 515-526.10.1093/biomet/76.3.515
- Atwood, C. L. (1973). Sequences converging to D-optimal designs of experiments. Annals of Mathematical Statistics. 1, 342-352.10.1214/aos/1176342371
- Bandura, V., Turcan, O., & Palamarchuk, V. (2015). Experimental study of technological parameters of the process of infrared drying of a moving ball of oilseed crops. MOTROL Commission of Motorization and Energetics in Agriculture, 17(4), 211-214.
- Bartel, R. G. & Sherbert, D. R. (2000). Introduction to Real Analysis. New York: Wiley.
- Bulgakov, V., Nikolaenko, S., Kiurchev, S., Pascuzzi, S., Arak, M., Santoro, F., Olt, J. (2020). The theory of vibrational wave movement in drying grain mixture. Agronomy Research, 18(2), 360-375.
- Cook, R. D., & Nachtrheim, C. J. (1980). A comparison of algorithms for constructing exact D-optimal designs. Technometrics, 22(3), 315-324.10.1080/00401706.1980.10486162
- Faichuk, O., Voliak, L., Glowacki, S., Pantsyr, Y., Slobodian, S., Szeląg-Sikora, A., & Gródek-Szostak, Z. (2022). European Green Deal: Threats Assessment for Agri-Food Exporting Countries to the EU. Sustainability, 14, 3712.10.3390/su14073712
- Ginzburg, A.S. (1973). Drying food, M.: Food industry, 528.
- Ivanyshyn, V., Yermakov, S., Ishchenko, T., Mudryk, K. (2020). Calculation algorithm for the dynamic coefficient of vibro-viscosity and other properties of energy willow cuttings movement in terms of their unloading from the tanker. In E3S Web of Conferences, 154, 04005.10.1051/e3sconf/202015404005
- Jung, J. S., & Yum, B. J. (1996). Construction of exact D-optimal designs by Tabu search. Computational Statistics & Data Analysis, 21(2), 181-191.10.1016/0167-9473(95)00014-3
- Kiurchev, S., Verkholantseva, V., Kiurcheva, L., & Dumanskyi, O. (2020). Physical-mathematical modeling of the vibrating conveyor drying process of soybeans. Latvia University of Sciences and Techologies Faculty of Engineering. Jelgava, 991-996.10.22616/ERDev.2020.19.TF234
- Kuhfeld, W. F. (2010). Experimental design, efficiency, coding, and choice designs. Marketing research methods in sas: Experimental design, choice, conjoint, and graphical techniques, 47-97.
- Lutsiak, V., Hutsol, T., Kovalenko, N., Kwaśniewski, D., Kowalczyk, Z., Belei, S., & Marusei, T. (2021). Enterprise Activity Modeling in Walnut Sector in Ukraine. Sustainability, 13(23), 13027.10.3390/su132313027
- Malkina, V., Kiurchev, S., Osadchyi, V., & Strokan, O. (2019). The formation of orthogonal balanced experiment designs based on special block matrix operations on the example of the mathematical modeling of the pneumatic gravity seed separator. In Modern Development Paths of Agricultural Production (pp. 111-119). Springer, Cham.10.1007/978-3-030-14918-5_12
- Meyer, R. K., & Nachtsheim, C. J. (1995). The coordinate-exchange algorithm for constructing exact optimal experimental designs. Technometrics, 37(1), 60-69.10.1080/00401706.1995.10485889
- Nguyen, N. K., & Miller, A. J. (1992). A review of some exchange algorithms for constructing discrete D-optimal designs. Computational Statistics & Data Analysis, 14(4), 489-498.10.1016/0167-9473(92)90064-M
- Palamarchuk, I. P., Tsurkan, O. V., & Palamarchuk, V. I. (2015). The analysis of theoretical and experimental research results of infrared vibrowave conveyer dryer main parameters. TEKA. Commissionof Motorization and Power Industry in Agriculture, 15(4), 314-323.
- Palamarchuk, I., Kiurchev, S., Kiurcheva, L., & Verkholantseva, V. (2019). Analysis of Main Process Characteristics of Infrared Drying in the Moving Layer of Grain Produce. In Modern Development Paths of Agricultural Production (pp. 317-322). Springer, Cham.10.1007/978-3-030-14918-5_33
- Palamarchuk, I., Tsurkan, O., Palamarchuk, V., & Kharchenko, S. (2016). Research of competitiveness of vibrowave infrared conveyor dryer for postharvest processing of grain. Eastern-European Journal of Enterprise Technologies, 27(8), 79-85.10.15587/1729-4061.2016.65887
- Palamarchuk, I.P., Drukovany, M.F., Pala-Marchuk, V.I., & Burova Z.A. (2017). Vibromechanical intensification of drying processes of oil-containing raw materials: monograph row. “COMPRINT”, 325.
- Sagnol, G., & Harman, R. (2015). Computing exact $ D $-optimal designs by mixed integer second-order cone programming. The Annals of Statistics, 43(5), 2198-2224.10.1214/15-AOS1339
- Samoychuk, K.O., Kiurchev, S.V., Yalpachik, V.F., Palyanichka, N.O., Verkholantseva, V.O., Lomeyko, O.P., (2020). Innovative technologies and equipment industries. Processing of crop products: A guide. Melitopol, 307.
- Schneid, S. (2010). PAT in freeze drying: monitoring of product pesistance using non-invasive NIR-spectroscopic TDLAS measurements/S. Schneid, H. Gieseler. Proc. 7th World Meeting on Pharmaceutics, Biopharmaceutics and Pharmaceutical Technology, Valetta, Malta, March 8-11.
- Schubert, H., Regier, M., & Knoerzer, K. (Eds.). (2005). The microwave processing of foods. Taylor & Francis US.10.1533/9781845690212
- Tryhuba, A., Kubon, M., Tryhuba, I., Komarnitskyi, S., Tabor, S., Kwaśniewski, D., Faichuk, O., Hohol, T. (2022). Taxonomy and Stakeholder Risk Management in Integrated Projects of the European Green Deal. Energies, 15, 2015.10.3390/en15062015
- Yermakov S., Hutsol T., Rozkosz A., Glowacki S., Slobodian S. (2021a). Evaluation of Effective Parameters of Biomass Heat Treatment in Processing for Solid Fuel. Engineering for Rural Development. 241, 1114-1119.10.22616/ERDev.2021.20.TF241
- Yermakov, S., Hutsol, T., Glowacki S., Hulevskyi V., & Pylypenko V. (2021b). Primary Assessment of the Degree of Torrefaction of Biomass Agricultural Crops. Environment. Technologies. Resources, 241, 264-267.10.17770/etr2021vol1.6597
- Yermakov, S., Taras, H., Mudryk, K., Dziedzic, K., & Mykhailova, L. (2019). The analysis of stochastic processes in unloadingthe energywillow cuttings from the hopper. Environment. Technologies. Resources. Proceedings of the International Scientific and Practical Conference, 3, 249-252.10.17770/etr2019vol3.4159
- Yu, Y. (2011). D-optimal designs via a cocktail algorithm. Statistics and Computing, 21, 475-481.10.1007/s11222-010-9183-2