1. Alderson J, Johnson W (2016) THE PERSONALISED “DIGITAL ATHLETE”: an evolving vision for the capture, modelling and simulation, of on-field athletic performance. 34th International Conference on Biomechanics in Sports, 23–26
2. Alexander T, Huiskamp W, Fromm L, Lewis MD, DiMatteo R, Gunzelmann G, MGroarty C, Gallant S, Blais D, Genc I (2020) Reference architecture for human behaviour modelling (STO-TR-MSG-127). https://www.sto.nato.int/publications/STOTechnical Reports/Forms/Technical Report Document Set/docsethomepage.aspx?ID=4581&FolderCTID=0x0120D5200078F9E87043356C409A0D30823AFA16F6010066D541ED10A62C40B2AB0FEBE9841A61&List=92d5819c-e6ec-4241-aa4e-57bf918681b1&RootFolder=https://www.sto.nato.int/publications/STOTechnical Reports/STO-TR-MSG-127
3. Barricelli BR, Casiraghi E, Gliozzo J, Petrini A, Valtolina S (2020) Human digital twin for fitness management. IEEE Access 8:26637–26664. https://doi.org/10.1109/ACCESS.2020.2971576
4. Blanchard BS, Fabrycky W (2006) Systems engineering and analysis (4th edn). Pearson Education, Inc.
5. Boschert S, Rosen R (2016) Digital twin - the simulation aspect. In P. Hehenberger & D. Bradley (Eds.), Mechatronic Futures: Challenges and Solutions for Mechatronic Systems and Their Designers (pp. 59–74). Springer Nature. https://doi.org/10.1007/978-3-319-32156-1_1