Examensarbeten
Examensarbeten
[1]
S. LEGELIUS och L. LARSSON LINDH,
"Integrerade mikromobilitetslösningar vid tågstationer : En studie på hur ett uthyrningssystem för mikromobilitet kan minska restider och främja hållbara transporter,"
, 2024.
[2]
[3]
[4]
[5]
W. Wang och J. She,
"Exploring Bus Network Delay Propagation: Integration of Causal Inference and Complex Network Theory,"
, 2024.
[6]
[7]
[8]
[9]
[10]
[11]
[12]
[13]
[14]
[15]
[16]
[17]
M. Ramberg,
"Exploring the potential for rail-based public transport in the Swedish inland,"
, 2024.
[18]
[19]
[20]
S. H. Águtsson och D. A. C. Acuña,
"Calibration of Parameters forEnhanced Simulation of DockingBus Terminals : Case Study of Jakobsberg Station,"
, 2024.
[21]
[22]
[23]
T. CHANDER CHANDRASEKAR,
"Advancing Transportation Modeling with Large Language Models : A Case Study in the Swedish Context,"
, 2024.
[24]
[25]
[26]
[27]
[28]
[29]
J. Bexhorn och K. Kvarnefalk,
"Wi-Fi fingerprinting as a mean to measure building occupancy : A case study in an office environment,"
, 2023.
[30]
[31]
L. Mattson och D. Törn,
"Riktlinjer om infrastruktur för bussframkomlighet : En dokumentanalys om gatuutformning i Stockholm,"
, 2023.
[32]
[33]
[34]
T. Niku Pourian,
"Effects of automation in railway on the capacity : At the example of the S-Bahn Stuttgart,"
, 2023.
[35]
[36]
[37]
[38]
[39]
[40]
G. Matli och V. Soulaka,
"Analyzing a New Method for Estimating Strength Classes in Existing RC Structures,"
, 2023.
[41]
[42]
[43]
[44]
[45]
[46]
[47]
H. YITZHAK ACOSTA-CARRASCAL,
"Gender-based Motivations for Usage and Avoidance of Shared Micro-mobility during Night-time in Stockholm, Sweden,"
, 2023.
[48]
[49]
[50]
Examensarbeten (2017-12-31)
[1]
[2]
A. Enström och T. Kerrén,
"Cykeln tar plats : En studie om cyklisters omkörningsbeteende och utrymmesbehov i stadsmiljö,"
, 2017.
[3]
M. Jegenberg och K. Lundström,
"Fotgängares gånghastigheter i bytespunkter för kollektivtrafik,"
, 2017.
[4]
F. Nicolas Gomariz,
"International review of regulations and business models for city freight : Case study Tomteboda,"
, 2017.
[5]
[6]
[7]
[8]
[9]
[10]
A. Dahlberg och L. Jangenstål,
"Förutsättningar för ökad metervikt och axellast på Malmbanan,"
, 2016.
[11]
[12]
[13]
[14]
[15]
A. Vasilevskaya,
"Port intermodal transportation : Port of Stockholm hinterland scenario analysis,"
, 2016.
[16]
[17]
L. Castellano Cantó och E. Ladaria Escolano,
"Technical analysis of the transportation and management of waste system within the Stockholm-Mälaren Region, Sweden,"
, 2016.
[18]
[19]
[20]
[21]
[22]
[23]
[24]
[25]
[26]
[27]
[28]
[29]
A. Tarazona Ibáñez,
"Metro user evaluation of crowding during rush hours : Case study: Stockholm,"
, 2015.
[30]
G. López Ferri,
"Optimization of the public transport network for a multiple-core city : Case study: Stockholm,"
, 2015.
[31]
[32]
[33]
[34]
[35]
[36]
[37]
G. M. Lykogianni och M. Österlind,
"An electrified road future. : A feasibility study of electric road systems (ERS) for the logistic sector in Sweden.,"
, 2014.
[38]
A. Van Berlekom,
"Analys av pendelbåtsresenärers preferenser i Stockholmsområdet. : Från ett passagerarperspektiv.,"
, 2014.
[39]
Q. Wang och S. Mompo,
"Electric-road freight transport, Arlanda-Rosersberg logistic flow and environmental analysis.,"
, 2014.
[40]
[41]
I. C. Christidi,
"Feasibility study for expansion of the existing intermodal terminal in Jordbro.,"
, 2014.
[42]
[43]
[44]
[45]
[46]
[47]
[48]
[49]
[50]