Optimization of capacity expansion in potential-driven networks including multiple looping: a comparison of modelling approaches
From MaRDI portal
Publication:2125366
DOI10.1007/s00291-021-00648-7zbMath1486.90059OpenAlexW2892189352MaRDI QIDQ2125366
Publication date: 14 April 2022
Published in: OR Spectrum (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00291-021-00648-7
Programming involving graphs or networks (90C35) Mixed integer programming (90C11) Nonlinear programming (90C30) Transportation, logistics and supply chain management (90B06) Deterministic network models in operations research (90B10)
Related Items (1)
Uses Software
Cites Work
- Optimal pipe-sizing problem of tree-shaped gas distribution networks
- On the optimal design of water distribution networks: a practical MINLP approach
- A system to evaluate gas network capacities: concepts and implementation
- Optimization of pipe networks
- Optimization of capacity expansion planning for gas transportation networks
- Distribution network optimization: Finding the most economic solution by using genetic algorithms
- Effective relaxations and partitioning schemes for solving water distribution network design problems to global optimality
- A decomposition approach for optimal gas network extension with a finite set of demand scenarios
- Design and dimensioning of hydrogen transmission pipeline networks
- Robust optimal discrete arc sizing for tree-shaped potential networks
- Gas Network Extension Planning for Multiple Demand Scenarios
- Design and Operations of Gas Transmission Networks
- Evaluating Gas Network Capacities
- Convex Relaxations for Gas Expansion Planning
- The Gas Transmission Problem Solved by an Extension of the Simplex Algorithm
- Non-linear network problems
- Disjunctive Programming and a Hierarchy of Relaxations for Discrete Optimization Problems
- Optimal Design of Gas Pipeline Networks
- Optimal diameter assignment for gas pipeline networks
- Solving the Pipe Network Analysis Problem Using Optimization Techniques
- Braess's paradox and power-law nonlinearities in networks
- A Bilevel Programming Method for Pipe Network Optimization
- Optimal dimensioning of pipe networks: the new situation when the distribution and the transportation functions are disconnected
- Global Optimization of Nonlinear Network Design
- Über ein Paradoxon aus der Verkehrsplanung
- Optimal Dimensioning of Pipe Networks with Application to Gas Transmission Networks
- Benchmarking optimization software with performance profiles.
This page was built for publication: Optimization of capacity expansion in potential-driven networks including multiple looping: a comparison of modelling approaches