With the elaboration and application of the linked Data management platform in the project, a baseline for Battery development project data management has been provided. Based on user stories, derived from both the project tasks as well as the roles of persons in the project, the linked data management platform provides necessary data in combination with a corresponding link to the respective user, based on his/her demands. Thus a comprehensive link over the full battery development project is provided, which can be tailored for the respective user. Compared to conventional development work, communication ways are shortened, multiply tool usage for information / data procurement is prevented and an information exchange accross the stages of development (material development - battery subsystem development - battery system development) is enhanced. Thus AccCellBaT provides a methodology to streamline material modelling, system component modelling (cell, HV wiring in focus) with battery system level activities (DVP creation).
Electrochemical cell degradation modelling in combination with a novel in-situ sensor technique allow the development of improved ageing models. HV wiring harness degradation models are put in the focus for development for non-cell topics, allowing to investigate degradation mechanisms. The outcome of degradation modelling on all (sub-)component can be integrated in the Failure parameter sheet set up specifically for the AccCellBaT use cases. The same applies to the developed mechanical (crush), electrical and thermal models that are at present subject to optimization.
The efforts culiminate as input for the overall acceleration of a Battery development process that is applicable for multiple industrial fields; the process acceleration strategy outline has been defined, integration and optimization of the conducted development is part of the 2nd part of the project.
For test cycle optimzation the elaborated failure parameter sheets feature the basis for a selection of appropriate tests. Via an adjustment of boundary conditions (reference cycle vs. test cycle comparison, use case analysis) the tests can be optimized towards a reduced testing time at a higher quality of the test results.