system dynamics

11 Dec 2021 • viridi | history

System dynamics (SD) adalah suatu metodologi berdasarkan sistem umpan-balik yang dipinjam dari teori kontrol, dan metodologi ini dapat dengan mudah menangani ketidaklinieran dan penundaan-waktu dan struktur multi-simpul dari suatu sistem yang kompleks dan dinamis [1]. Dalam pemodelan dengan system dynamics, variabel-variabel tidak langsung dikecualikan dari pertimbangan jika pengukuran tercatat tentang variabel-variabel ini kurang [2]. Penambahan kata sifat, berupa kata benda, pada frasa system dynamics, yang semula mencakup penerapan yang lebih luas [3], membuatnya memiliki arti yang lebih khusus dan terbatas seperti digunakan pada multibody system dynamics [4], engineering system dynamics [5], dan earth system dynamics [6]. Selain itu spesialiasi lebih jauh dari multibody system dynamics menghasilkan vehicle system dynamics [7], yang bahkan telah tersedia matakuliah khususnya [8]. Agar lebih tersosialisasikan tedapat pelatihan analisis kebijakan menggunakan pendekatan SD ini [9], yang visualisasinya telah terkamodasi dengan GUI [10].

terms

note

  1. Bilash Kanti Bala, Fatimah Mohamed Arshad, Kusairi Mohd Noh, “System Dynamics: Modelling and Simulation”, Springer Texts in Business and Economics, Springer Nature, Singapore, 1st edition, 2017, url https://doi.org/10.1007/978-981-10-2045-2.
  2. Jack B. Homer, Gary B. Hirsch, “System Dynamics Modeling for Public Health: Background and Opportunities”, American Journal of Public Health [Am J. Publi Health], vol 96, no 3, p 452-458, Mar 2006, url https://dx.doi.org/10.2105%2FAJPH.2005.062059.
  3. G. P. Richardson, “The Basic Elements of System Dynamics”, in R. Meyers (eds) Complex Systems in Finance and Econometrics. Springer, New York, 2009, url https://doi.org/10.1007/978-1-4419-7701-4_48.
  4. W. Schiehlen, “Multibody System Dynamics: Roots and Perspectives”, [Multibody Syst Dyn], vol 1, no 2, p 149-188, Jun 1997, url https://doi.org/10.1023/A:1009745432698.
  5. Nicolae Lobontiu, “System Dynamics for Engineering Students: Concepts and Applications”, Academic Press, Amsterdam, 1st edition, Dec 2010, url https://isbnsearch.org/isbn/9780240811284 [20211210]. PDF
  6. Roland Baatz, Pamela L. Sullivan, Li Li, Samantha R. Weintraub, Henry W. Loescher, Michael Mirtl, Peter M. Groffman, Diana H. Wall, Michael Young, Tim White, Hang Wen, Steffen Zacharias, Ingolf Kühn, Jianwu Tang, Jérôme Gaillardet, Isabelle Braud, Alejandro N. Flores, Praveen Kumar, Henry Lin, Teamrat Ghezzehei, Julia Jones, Henry L. Gholz, Harry Vereecken, Kris Van Looy, “Steering operational synergies in terrestrial observation networks: opportunity for advancing Earth system dynamics modelling”, Earth System Dynamics [Earth Syst Dynam], vol 9, no 2, p 593–609, Apr-Jun 2018, url https://doi.org/10.5194/esd-9-593-2018.
  7. Dinggang Gao, Chen Chen, Guobin Lin, Shihui Luo, Yougang Sun, “Research on Car-Body Strength Evaluation Method of Shanghai High-Speed Maglev”, 2019 International Conference on Advances in Construction Machinery and Vehicle Engineering (ICACMVE), 2019, pp. 340-346, url https://doi.org/10.1109/ICACMVE.2019.00072.
  8. “Vehicle System dynamics”, ME 6019, School of Mechanical Engineering, Shanghai Jiao Tong University, 19.02.13, url https://me.sjtu.edu.cn/Mg_Admin/images/bksxxkc/english201321915264.pdf [20211211].
  9. Muhammad Tasrif, Ina Juniarti, Hani Rohani, Fauzan Ahmad, Eva Intan Nurwendah, Nurika Lestari Waspada, “Metodologi System Dynamics (Dinamika Sistem) untuk Pemodelan Kebijakan: Suatu Pengantar”, Pelatihan Analisis Kebijakan Menggunakan Model System Dynamics, Bandung, 14-18 Desember 2015, url https://www.lppm.itb.ac.id/wp-content/uploads/sites/55/2017/07/BAHAN_PELATIHAN.pdf [20211210].
  10. Wikipedia contributors, “System dynamics”, Wikipedia, The Free Encyclopedia, 22 July 2021, 21:11 UTC, url https://en.wikipedia.org/w/index.php?oldid=1034966749 [20211210].

comments

#bug0260

— Sparisoma Viridi (@6unpnp) December 11, 2021