Projects

Open Research Data Projects

Projects funded in the framework of the ORD Program

The joint ORD program of ETH Zurich, EPFL and the four research institutes of the ETH Domain has financially supported more than 60 research projects in the period 2020–2023. Funding supports researchers engaging in, or developing, ORD practices with and for their community and assists these researchers in becoming Open Research Data leaders in their field.

This page provides an overview of these projects. It highlights how researchers in the ETH Domain are currently applying ORD in exemplary ways. Some of the projects have already been completed, others are still in progress. The projects have been divided into three categories.

“Establish” projects help link existing ORD practices to a research agenda to establish them on a broader basis. They contribute to a shared and comprehensive understanding of ORD practices that can then become de facto standards.

“Explore” projects are the most extensive ventures in the program and are designed to explore and test early-stage ORD practices. The goal is to map processes of what an ORD practice might look like and develop prototypes. Through these projects, new teams form across disciplines and institutions.

“Contribute” projects help scientists integrate their research data into existing, often international, infrastructures. By standardizing the processes and making them generally accessible, the data are validated, and their potential is considerably expanded.

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MMS (Masonry MicroStructures database) - A 3D masonry microstructures database for advancing numerical research on irregular stone masonry structures

Category

Contribute

Institutions

EPFL

Data type

Microstructure database

Field

Materials Science

Researchers

Shah, Mati Ullah

Abstract

Stone masonry is an eco-friendly construction material, but its use has declined due to its vulnerability to earthquakes, mainly because of the poor arrangement of its microstructure. The microstructure includes the shape, size, and arrangement of stone units, which vary based on geographic, temporal, and material factors. Current building codes cannot fully account for this variability, and experimental studies are costly and impractical due to the diversity of masonry typologies. Numerical studies offer a solution, but creating realistic microstructures for modeling irregular stone masonry is complex and time-consuming. As a result, simplified microstructures are often used in simulations, which fail to capture the complexities of irregular masonry walls. To address this challenge, we have developed a 3D masonry microstructures database ready to use in numerical simulations. To enhance accessibility and usability, this project aims to create a web-based platform hosting this curated database of 3D microstructures and their geometric indices. The proposed web-based platform will also feature a tool for evaluating masonry quality using the Masonry Quality Index (MQI) from 2D images, promoting the preservation of historic structures and sustainable construction practices. Additionally, the platform will enable researchers to contribute and document new 3D microstructures, fostering collaboration and advancing numerical research on stone masonry.

Application Programming Interface for the River to Ocean Geodatabase for Education and Research

Category

Contribute

Institutions

ETH Zurich

Data type

Environnement

Field

Earth sciences

Researchers

Paradis, Sarah

Abstract

In order to advance our understanding of the carbon cycle, it is essential to evaluate the spatiotemporal variations of carbon between river and marine environments and gain insights into the pathways of carbon transfer from land to ocean. To do this, we need to work jointly with riverine and marine data, accounting for their temporal and spatial distribution. However, each of these systems have different data and metadata reporting strategies that need to be accounted for, which complicates their joint application. Efforts have been made to compile data from each of these systems into independent databases, but no attempt has yet been done to create a joint database of data of both of these systems while accounting for their different metadata. Hence, this project aims to bring together riverine and marine data into one database to easily query the data between both systems through the River to Ocean Geodatabase for Education and Research (ROGER). This database will be displayed in an interactive web-interface that queries riverine and/or marine data depending on the user’s requirements through a REST API. Harnessing the advanced geographical functions of PostgreSQL, the REST API will include functions that allow users to geospatially integrate riverine and marine data. This new database will provide a crucial step forward in the understanding of the carbon cycle along the land-ocean continuum, while ensuring that the data complies with best Open Research Data practices.

Development of standardized Respiratory Open Access Research

Category

Contribute

Institutions

EPFL

Data type

Medical data

Field

Life sciences

Researchers

Dan, Jonathan

Abstract

Chronic cough is a common condition globally. While efforts are being made to develop wearables to detect and quantify cough events automatically, such monitoring devices have not yet been incorporated into routine clinical practice due to a lack of consistency in their validation, resulting in slow progress and a lack of trust in reported results. We have identified three main reasons for this heterogeneity: 1) the clinical definition of different cough events and especially the delimitation of their beginning/end lacks standardization, 2) the data used is typically private and imbalanced with inadequate labelling as a result of the previous point, and 3) methodologies to assess the accuracy of event detection are different between research groups and often inappropriate. This proposal builds on ORD datasets, community guidelines, and standards to propose a unified framework for validating cough event detection algorithms. The main objective is the development of standards that will unify the workflow for validating respiratory event detection algorithms to ensure data adheres the principles of Findable, Accessible, Interpretable, and Reusable data. This will be distributed through a website, serving as a central hub and reference for standardizing clinical definitions and methodologies, leading to a future benchmarking platform for respiratory event detection algorithms.

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TSDF (Time Series DataFrame) - A data storage architecture for scalable processing of heterogeneous and geospatial time series

Category

Contribute

Institutions

EPFL

Data type

Geospatial time series

Field

Environmental Engineering

Researchers

Martí Bosch

Abstract

Geospatial time series data are pivotal in environmental sciences, from meteorological stations to mobile sensors. However, the absence of standardized practices due to data heterogeneity and irregularity hinders their processing and storage. This proposal introduces TSDF, a data specification addressing these issues. It offers a flexible framework for accessing, processing, storing, and sharing geospatial time series data. TSDF utilizes Apache Parquet for a binary format, enabling hierarchical structuring of measurements. A Python package will be developed for easy data loading into pandas data frames, simplifying operations like filtering, reducing, and combining data. This work streamlines geospatial time series data processing, enhancing interoperability, reusability, and collaboration.

DaTabases and fRont-end wEb-bAsed Software for performance-based natUral hazaRds Engineering

Category

Contribute

Institutions

EPFL

Data type

Interactive web-based software

Field

Steel structures

Researchers

Dimitrios Lignos

Abstract

The growing recognition of data's value for research and design in natural hazards infrastructure engineering is timely. This project seeks to further develop and curate open-access databases consistently. Interactive web-based software will be created, offering predictive models and probabilistic distribution functions for structural metallic material damage, along with enhanced data visualization. The data curation process aligns with FAIR principles, harmonizing formats for broader data reuse in research and engineering. Dissemination, maintenance, and comprehensive guidelines for standardizing data storage and visualization will ensure long-term sustainability.

Reinforcing open data analysis with spam: FAIR packaging and workshop organisation

Category

Contribute

Institutions

EPFL

Data type

Software engineering tasks

Field

Imaging, Image Analysis

Researchers

Edward Andò

Abstract

The goal is to enhance accessibility of the open-source software 'spam' for the experimental mechanics community. This promotes ORD practices, avoiding closed formats and vendor lock-in. The objective is to build a community of users for future joint developments within the ETH domain. To achieve this, complex software engineering tasks will be outsourced to an EPFL service. Additionally, a three-day workshop will be organized to promote, explain, and demonstrate ORD practices using 'spam.'

Reprod, a web interface to assess reproducibility in experimental sciences

Category

Contribute

Institutions

EPFL

Data type

Articles in Drosophila immunity

Field

Life sciences

Researchers

Bruno Lemaitre

Abstract

Recent discussions highlight a reproducibility crisis in life sciences, raising questions about scientific claims' accuracy. We initiated a project to assess the reproducibility of 400 articles in Drosophila immunity over three decades. The goal is to create a public database for experimental biologists to gauge the trustworthiness of discoveries in this field. SNSF funding supports article annotation and claim verification. As part of an ETH Domain ORD Program, we aim to develop a web interface to present major, main, and minor claims, allowing community comments. This resource offers easy access to supporting and contradictory data in Drosophila immunity topics. This proposal supports the web interface's creation and open access, making it applicable in other fields. Our project's uniqueness could transform science by providing a new tool for community reproducibility assessment and discussion.

FAIR and reproducible sharing of data, code and computational environment

Category

Contribute

Institutions

ETH Zurich

Data type

Reproducible Research Platform (RRP)

Field

Systems Biology

Researchers

Hans-Michael Kaltenbach

Abstract

In recent years, scientific domains, including biomedical sciences, have faced a "reproducibility crisis." Open science practices are increasingly demanded by funders, journals, and institutions, emphasizing FAIR data principles. However, FAIR data sharing alone doesn't guarantee reproducibility; it requires a defined computational environment. Our Reproducible Research Platform (RRP) encapsulates FAIR data, code, and the computational environment. RRP is based on open-source tools and JupyterLab, aiming to share projects with all necessary components. This enables full reusability, allowing others to reproduce, modify, and extend previous work, serving collaborators, authors, reviewers, students, and the general public.

Open Platform for Benchmarking Uncertainty Quantification Algorithms

Category

Contribute

Institutions

ETH Zurich

Data type

UQLab benchmark module

Field

Risk, Safety and Uncertainty quantification

Researchers

Bruno Sudret

Abstract

Uncertainty quantification (UQ) aids in assessing uncertainties' impact on decision-making across scientific fields like geophysics, engineering, and finance. UQ methodology efficiency is vital. Yet, assessing new methods' efficiency is challenging due to limited community benchmarking. This project creates a UQLab benchmark module, enabling automated benchmarking without data gathering and manual post-processing. The benchmark data and results will be accessible on UQWorld, a forum for UQ practitioners, forming a reference database for future publications. This platform fosters engagement with the UQ community and promotes open research data practices.

GPM-API: A Python Interface to Access the Global Precipitation Measurement Mission Satellites Open Data Archive

Category

Contribute

Institutions

EPFL

Data type

Satellite data

Field

Large-scale hydrology

Researchers

Gionata Ghiggi

Abstract

The proposal aims to complete the GPM-API software, enhancing access to Global Precipitation Measurement Mission (GPM) satellite data. The GPM archive comprises diverse product levels, from raw measurements to long-term precipitation records. GPM-API simplifies file searching and downloading, streamlining data processing for greater computational efficiency. By openly sharing the GPM-API, the project aims to accelerate scientist productivity by eliminating the time-consuming data wrangling process, broaden the GPM user community, and facilitate educational use of the GPM archive. This initiative enhances the findability and accessibility of GPM satellite measurements, offering a more efficient and user-friendly tool for scientists and educators alike.

NapariX: A Suite of Image Restoration and Enhancement Plugins for Napari

Category

Contribute

Institutions

EPFL

Data type

Images

Field

Computational Imaging‬‬‬

Researchers

Matthieu Simeoni

Abstract

Image restoration and enhancement improve image quality for visualization and analysis. However, existing solutions lack user-friendly interfaces, hindering adoption. Napari, a Python image viewer, offers an ideal platform for integrating image processing tools. This proposal suggests developing general-purpose image restoration and enhancement plugins for Napari, adhering to HPC standards and FAIR principles. These plugins, combined with Napari's visual features, enable imaging scientists to leverage modern computational imaging methods seamlessly in their workflows.

API to the Montreux Jazz Open Platform

Category

Contribute

Institutions

EPFL

Data type

Audiovisual metadata

Field

Digital Signal Processing

Researchers

Alain Dufaux

Abstract

This project links Montreux Jazz audiovisual archive metadata with the Secure Open Platform developed by EPFL in collaboration with CHC, SDSC, and DCML. It builds on the Open Science project for secure computation, enhancing the platform with metadata for data subset selection. An SQLite database REST API will list concert information, enabling frontend search requests. A secure Custodian-compliant REST API will automate user authentication, data queries, and algorithm execution. This supports web apps, such as those developed at DCML, to log in, run authorized algorithms on selected data, and display results in the browser.

HDF5-USID scheme implementation in the Open-Source SPM project for Pycroscopy ecosystems

Category

Contribute

Institutions

EPFL

Data type

HDF5, USID

Field

Bio- and Nano-Instrumentation

Researchers

Marcos Penedo Garcia

Abstract

Open-source data schemes are increasingly crucial for scientific data storage, promoting early sharing of software, data, and knowledge, along with robust long-term preservation. This project integrates HDF5 and USID open standards into the established ORD worldwide project at EPFL: the Open-Source SPM controller. Addressing current file scheme weaknesses, this implementation allows access to the vibrant Pycroscopy open software ecosystem, leveraging existing functionalities and tools based on HDF5 and USID standards.

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