Uncertainty Annotations for Holistic Test Description of Cyber-physical Energy Systems

Fuente: arXiv
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Bibliographic Details
Main Authors: Heussen, Kai, Schwarz, Jan Sören, Schulte, Eike, Feng, Zhiwang, Perez, Leonard Enrique Ramos, Nikoletatos, John, Andren, Filip Pröstl
Format: Preprint
Published: 2025
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_version_ 1866916816896393216
author Heussen, Kai
Schwarz, Jan Sören
Schulte, Eike
Feng, Zhiwang
Perez, Leonard Enrique Ramos
Nikoletatos, John
Andren, Filip Pröstl
author_facet Heussen, Kai
Schwarz, Jan Sören
Schulte, Eike
Feng, Zhiwang
Perez, Leonard Enrique Ramos
Nikoletatos, John
Andren, Filip Pröstl
contents The complexity of experimental setups in the field of cyber-physical energy systems has motivated the development of the Holistic Test Description (HTD), a well-adopted approach for documenting and communicating test designs. Uncertainty, in its many flavours, is an important factor influencing the communication about experiment plans, execution of, and the reproducibility of experimental results. The work presented here focuses on supporting the structured analysis of experimental uncertainty aspects during planning and documenting complex energy systems tests. This paper introduces uncertainty extensions to the original HTD and an additional uncertainty analysis tool. The templates and tools are openly available and their use is exemplified in two case studies.
format Preprint
id arxiv_https___arxiv_org_abs_2506_23436
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Uncertainty Annotations for Holistic Test Description of Cyber-physical Energy Systems
Heussen, Kai
Schwarz, Jan Sören
Schulte, Eike
Feng, Zhiwang
Perez, Leonard Enrique Ramos
Nikoletatos, John
Andren, Filip Pröstl
Applications
The complexity of experimental setups in the field of cyber-physical energy systems has motivated the development of the Holistic Test Description (HTD), a well-adopted approach for documenting and communicating test designs. Uncertainty, in its many flavours, is an important factor influencing the communication about experiment plans, execution of, and the reproducibility of experimental results. The work presented here focuses on supporting the structured analysis of experimental uncertainty aspects during planning and documenting complex energy systems tests. This paper introduces uncertainty extensions to the original HTD and an additional uncertainty analysis tool. The templates and tools are openly available and their use is exemplified in two case studies.
title Uncertainty Annotations for Holistic Test Description of Cyber-physical Energy Systems
topic Applications
url https://arxiv.org/abs/2506.23436