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Considering Automated Vehicle Deployment Uncertainty in the Design of Optimal Parking Garages Using Real Options

Figure 1 – Case study parking garage cross section with a traditionally designed garage (red box in the left image) and a flexibly designed garage (red box in the right image) © Chair for Infrastructure Management, ETH Zurich.

Arnór B. Elvarsson, Claudio Martani, Bryan T. Adey
2020
Article online

Parking garages are often currently designed assuming that parking demand will be stable over their lifetime. The looming mobility shift towards automated vehicles (AVs), however, makes parking demand highly uncertain, with some scenarios leading to its complete disappearance at some time in the near future. The design of optimal parking garages needs to take this uncertainty into consideration and may lead to parking garages that can easily be transformed for other uses when beneficial.

In situations of large future demand uncertainty, infrastructure owners are increasingly using the real options method to help evaluate the potential benefits of paying more for construction of flexibly designed infrastructure. The real options method, helps owners, to avoid under-, or overinvesting in infrastructure, through the minimisation of their risks. In this work, a methodology, which uses the real options method, is proposed to determine the optimal design of a parking garage located within a residential building. The methodology is used, together with estimates of the uncertainty in the future parking demand due to deployment of AVs, Monte Carlo simulations of the possible futures, stakeholder costs for operation and refurbishment costs for each of the different design alternatives and intervention strategies, to estimate the net benefits over the life-time of the parking garage.

In: Journal of Building Engineering, DOI: 10.1016/j.jobe.2020.101703

Table 1 – Overview of designs and possible interventions per design © Chair of Infrastructure Management, ETH Zurich
Table 1 – Overview of designs and possible interventions per design © Chair of Infrastructure Management, ETH Zurich
Figure 2 – Distributions of net benefits for each alternative at T=70, dotted lines represent the mode for net benefit © Chair of Infrastructure Management, ETH Zurich
Figure 2 – Distributions of net benefits for each alternative at T=70, dotted lines represent the mode for net benefit © Chair of Infrastructure Management, ETH Zurich

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This article has been published in the following newsletter edition:

48 | Dezember 2020: Communication | Mediation

  • Bringing the Land Back into the City – Possibilities for Ecological Transition in Geneva
  • Generationenwohnen – von Erfahrungen innovativer Wohnprojekte lernen
  • Exploring Urban Scale Models
  • Communicating Railway Delays and Adjusted Timetables: the Role of Incomplete Information to Passengers in Railway Operations
  • Von San Francisco bis Moskau. Der Botanische Garten Zürich als ein Drehkreuz im globalen Pflanzenhandel des 19. Jahrhunderts
  • Participatory Multi-objective Optimization for Planning Dense and Green Cities
Kurzmeldungen
  • Projektstart: Digitale Nachbarschaften
  • Neue Gastdozentin Landschaftsarchitektur: Maren Brakebusch
  • Aktualisierung Raum+ Kanton Obwalden
  • 3D DSS for Supporting the Planning of Electric Power Systems
Publikationen
  • The Impact of Vertical Densification on Public Lighting in Informal Settlements: Using Virtual Environments as an Evaluation Tool for Policy Making
  • MaaS Bundle Design
  • Projektdokumentation Jugendjobbörse Winterthur
  • Rewriting Architecture 10+1 Actions: Tabula Scripta
  • Transforming Knowledge Systems for Life on Earth: Visions of Future Systems and how to get there
  • Sustainable Funding Strategies for Stormwater Infrastructure Management: A System Dynamics Model
  • Considering Automated Vehicle Deployment Uncertainty in the Design of Optimal Parking Garages Using Real Options
  • Identifying Changes in Bicycle Accident Trends Using GIS and Time Series Information in the City of Zürich
  • Densification Processes in Comparison: Alexandra and Marlboro South
  • disP 56/3, September 2020
Weiterbildung | Studiengänge
  • Master of Advanced Studies ETH EPFL in Urban and Territorial Design
  • Master of Advanced Studies ETH in Raumplanung 2021/23
  • CAS/DAS Verkehrsingenieurwesen ab Herbst 2021
  • Master of Science ETH in Landschaftsarchitektur
  • Master of Advanced Studies ETH in Housing
Aktuell
  • Architektur für einen Planeten in der Krise | Architecture for a Broken Planet
  • ZÜRICH 1980. Bewegter Alltag: Fotografien von Gertrud Vogler / Poetische Provokationen: Die Sprache der Bewegung
  • The Things Around Us

Chairs

Prof. Dr. Bryan T. Adey
Prof. Dr. Kay W. Axhausen
Prof. Dr. Tom Avermaete
Prof. Maria Conen
Prof. Dr. Francesco Corman
Dr. Jennifer Duyne Barenstein
Prof. Teresa Galí-Izard
Prof. Dr. Adrienne Grêt-Regamey
Prof. Dr. Guillaume Habert
Prof. Dr. Eva Heinen
Prof. Damian Jerjen
Prof. Dr. David Kaufmann
Prof. Hubert Klumpner
Dr. Anastasios Kouvelas
Prof. Freek Persyn
Prof. Dr. Christian Schmid
Prof. Milica Topalovic
Prof. Martina Voser

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NSL – Netzwerk Stadt und Landschaft
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HIL H 44.2
8093 Zürich

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Director: Prof. Dr. David Kaufmann
Deputy Director: Prof. Milica Topalovic

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