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Information on didactic, research and institutional assignments on this page are certified by the University; more information, prepared by the professor, are available on the personal web page and in the curriculum vitae indicated on this webpage.
Information on professor
ProfessorRacic Vitomir
QualificationAssociate professor full time
Belonging DepartmentDipartimento di Ingegneria Civile e Ambientale
Scientific-Disciplinary SectorICAR/08 - Structural Mechanics
Curriculum VitaeDownload CV (132.89Kb - 15/06/2018)
OrcIDhttps://orcid.org/0000-0002-3523-411X

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Professor's office hoursProfessor's office hours is not available yet
E-mailvitomir.racic@polimi.it
Professor's personal website--

Data source: RE.PUBLIC@POLIMI - Research Publications at Politecnico di Milano

List of publications and reserach products for the year 2020 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
Vibration performance of a lightweight FRP footbridge under human dynamic excitation (Show >>)


List of publications and reserach products for the year 2019 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
Advanced fourier-based model of bouncing loads (Show >>)
Paradigm shift in structural vibration serviceability: New assessment framework based on human’s experience of vibration (Show >>)
Journal Articles
Image-based tracking technique assessment and application to a fluid–structure interaction experiment (Show >>)


List of publications and reserach products for the year 2018 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Journal Articles
A data-driven wavelet-based approach for generating jumping loads (Show >>)
A model of synchronisation in crowd dynamics (Show >>)
Identification of walking human model using agent-based modelling (Show >>)
Improved model for human induced vibrations of high-frequency floors (Show >>)
Modeling of longitudinal human walking force using self-sustained oscillator (Show >>)
Modelling the nonlinear oscillations due to vertical bouncing using a multi-scale restoring force system identification method (Show >>)
Modelling vertical human walking forces using self-sustained oscillator (Show >>)
Time-dependent spectral analysis of interactions within groups of walking pedestrians and vertical structural motion using wavelets (Show >>)
Using inertial measurement units to identify medio-lateral ground reaction forces due to walking and swaying (Show >>)


List of publications and reserach products for the year 2017 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
Modelling framework of pedestrian-footbridge interaction in vertical direction (Show >>)
Journal Articles
Effect of group walking traffic on dynamic properties of pedestrian structures (Show >>)
Structural vibration serviceability: New design framework featuring human-structure interaction (Show >>)


List of publications and reserach products for the year 2016 (Show all details | Hide all details)
Type Title of the Publicaiton/Product
Conference proceedings
Characterisation of transient actions induced by spectators on sport stadia (Show >>)
Improved footfall model for vibration of high-frequency floors (Show >>)
Journal Articles
A framework for experimental determination of localised vertical pedestrian forces on full-scale structures using wireless attitude and heading reference systems (Show >>)
Acceleration response spectrum for predicting floor vibration due to occupants jumping (Show >>)
Acceleration response spectrum for prediction of structural vibration due to individual bouncing (Show >>)
Concurrent repeatability and reproducibility analyses of four marker placement protocols for the foot-ankle complex (Show >>)
Emerging research on vibration serviceability of footbridges due to pedestrian crowds (Show >>)
Identification of mass-spring-damper model of walking humans (Show >>)
Interaction between walking humans and structures in vertical direction: A literature review (Show >>)
Measuring human-induced vibrations of civil engineering structures via vision-based motion tracking (Show >>)
Modelling framework for dynamic interaction between multiple pedestrians and vertical vibrations of footbridges (Show >>)
Universal response spectrum procedure for predicting walking-induced floor vibration (Show >>)
manifesti v. 3.3.7 / 3.3.7
Area Servizi ICT
16/07/2020