Abstract
Horizon 2020 and Horizon Europe the EU programs supporting research and
innovation through collaboration between companies, academic institutions, and
research organisations. This paper introduces a novel methodology using open
data on Horizon programs to analyse collaborations, leadership roles, and their
evolution, with a focus on the North Adriatic Hydrogen Valley project in the
hydrogen energy sector.
The methodology employs network analysis, transforming tabular data into
weighted networks that represent collaborations between organisations.
Centrality measures and community detection algorithms identify influential
organisations and stable partnerships over time. To ensure robust and reliable
results, the methodology addresses challenges such as input-ordering bias and
result variability, while the exploration of the solution space enhances the
accuracy of identified collaboration patterns.
The case study reveals key leaders and stable communities within the hydrogen
energy sector, providing valuable insights for policymakers and organisations
fostering innovation through sustained collaborations. The proposed methodology
effectively identifies influential organisations and tracks the stability of
research collaborations. The insights gained are valuable for policymakers and
organisations seeking to foster innovation through sustained partnerships. This
approach can be extended to other sectors, offering a framework for
understanding the impact of EU research funding on collaboration and leadership
dynamics.
Citation
ID:
281938
Ref Key:
stefano2024mapping