Get Free Shipping on orders over $0
Advancing Robust Multi-Objective Optimisation Applied to Complex Model-Based Water-Related Problems : IHE Delft PhD Thesis Series - Oscar Osvaldo Marquez Calvo

Advancing Robust Multi-Objective Optimisation Applied to Complex Model-Based Water-Related Problems

By: Oscar Osvaldo Marquez Calvo

eText | 7 February 2020 | Edition Number 1

At a Glance

eText


$160.60

or 4 interest-free payments of $40.15 with

 or 

Instant online reading in your Booktopia eTextbook Library *

Why choose an eTextbook?

Instant Access *

Purchase and read your book immediately

Read Aloud

Listen and follow along as Bookshelf reads to you

Study Tools

Built-in study tools like highlights and more

* eTextbooks are not downloadable to your eReader or an app and can be accessed via web browsers only. You must be connected to the internet and have no technical issues with your device or browser that could prevent the eTextbook from operating.

The exercise of solving engineering problems that require optimisation procedures can be seriously affected by uncertain variables, resulting in potential underperforming solutions. Although this is a well-known problem, important knowledge gaps are still to be addressed. For example, concepts of robustness largely differ from study to study, robust solutions are generally provided with limited information about their uncertainty, and robust optimisation is difficult to apply as it is a computationally demanding task.

The proposed research aims to address the mentioned challenges and focuses on robust optimisation of multiple objectives and multiple sources of probabilistically described uncertainty. This is done by the development of the Robust Optimisation and Probabilistic Analysis of Robustness algorithm (ROPAR), which integrates widely accepted robustness metrics into a single flexible framework. In this thesis, ROPAR is not only tested in benchmark functions, but also in engineering problems related to the water sector, in particular the design of urban drainage and water distribution systems.

ROPAR allows for employing practically any existing multi-objective optimisation algorithm as its internal optimisation engine, which enables its applicability to other problems as well. Additionally, ROPAR can be straightforwardly parallelized, allowing for fast availability of results.

on
Desktop
Tablet
Mobile

More in Environmental Science

College Biology : Collins College Outlines - Marshall Sundberg

eBOOK

RRP $28.99

$23.99

17%
OFF