Procurement Summary
Country : Netherlands
Summary : Digital Twin of a High Voltage Module for Electronic Power Conditioners (EPC) or Power Processing Units (PPUS)
Deadline : 18 Sep 2024
Other Information
Notice Type : Tender
TOT Ref.No.: 102192785
Document Ref. No. : 1-12219
Competition : ICB
Financier : Agency for the Cooperation of Energy Regulators (ACER)
Purchaser Ownership : Public
Tender Value : Refer Document
Purchaser's Detail
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Login to see detailsTender Details
Tenders are invited for Digital Twin of a High Voltage Module for Electronic Power Conditioners (Epc) or Power Processing Units (Ppus) (Artes at 4b.183)
The objective of the activity is to develop a digital model of a high voltage module typically used in power processing units for electric propulsion or travelling wave tube amplifiers. This model or "digital twin" shall enable an in-depth evaluation which is today only possible by test. Targeted Improvements: Enabling a new approach to achieve innovation acceleration of high voltage module design and test, leading to:- decrease of the development effort by 50%, - reduction of testing time by 50%.Description: Nowadays the development of high voltage modules is very complex and time consuming, involving in-demand experts with a very high level of specialised experience, involves hazardous and complex experiments at dangerous voltage levels. Therefore, the development increments are typically small and the development cycles long, which slows down the innovation significantly. A digital twin has the potential to overcome this shortcoming and allow experimenting with high voltage circuits and effects in a multiphysics simulation environment which is today already state of the art for all low voltage applications and has been in use for many years. A software model of a digital twin of a high voltage module for electronic power conditioners and power processing units will be developed. A simulation of voltage up to 12 kV Q band EPC applications or 2 kV for PPU applications should be achieved. Arcing and partial discharge simulations should be possible.Read more
Documents
Tender Notice