ScholarGate
Βοηθός

Σύγκριση μεθόδων

Εξετάστε τις επιλεγμένες μεθόδους δίπλα-δίπλα· οι γραμμές που διαφέρουν επισημαίνονται.

Πολυκριτήρια Δυναμική Προγραμματισμός×Βελτιστοποίηση Πολλαπλών Στόχων×
ΠεδίοΠροσομοίωσηΠροσομοίωση
ΟικογένειαProcess / pipelineProcess / pipeline
Έτος προέλευσης1957-19751896 (concept); 1989–2002 (evolutionary algorithms era)
ΔημιουργόςExtension of Bellman (1957); formalized by multiple authors from 1970s onwardVilfredo Pareto (concept); modern computational formulation by Goldberg and Deb et al.
ΤύποςExact optimization — recursive multi-objective decompositionOptimization framework
Θεμελιώδης πηγήBellman, R. (1957). Dynamic Programming. Princeton University Press, Princeton, NJ. ISBN: 9780691079516Deb, K. (2001). Multi-Objective Optimization Using Evolutionary Algorithms. Wiley, Chichester. ISBN: 9780471873396
Εναλλακτικές ονομασίεςMODP, Multi-criteria dynamic programming, Vector dynamic programming, Pareto dynamic programmingMOO, Multi-Criteria Optimization, Vector Optimization, Pareto Optimization
Συναφείς53
ΣύνοψηMulti-Objective Dynamic Programming (MODP) extends Bellman's classical dynamic programming to settings where a decision-maker must optimize several competing objectives simultaneously across a sequence of stages. Rather than a single optimal policy, it produces a Pareto-optimal set of policies — each representing a distinct trade-off profile — by propagating vector-valued value functions backward through the state space.Multi-Objective Optimization (MOO) is a mathematical and computational framework for finding solutions that simultaneously optimize two or more conflicting objective functions. Rather than collapsing all goals into a single scalar, MOO produces a set of trade-off solutions — the Pareto front — from which a decision-maker selects according to preference. It is widely used in engineering design, operations research, logistics, economics, and policy analysis.
ScholarGateΣύνολο δεδομένων
  1. v1
  2. 2 Πηγές
  3. PUBLISHED
  1. v1
  2. 2 Πηγές
  3. PUBLISHED

Μετάβαση στην αναζήτηση Download slides

ScholarGateΣύγκριση μεθόδων: Multi-objective dynamic programming · Multi-Objective Optimization. Ανακτήθηκε στις 2026-06-15 από https://scholargate.app/el/compare