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Development Methodology for Optomechatronic Systems Using the Example of a High-Resolution Projection Module

  • Peer Phillip Ley*
  • , Marvin Knöchelmann
  • , Gerolf Kloppenburg
  • , Roland Lachmayer
  • *Corresponding author for this work

Research output: Contribution to journalConference articleResearchpeer review

Abstract

In the last few years there has been a noticeable change in the development of headlamp systems in the field of vehicle lighting technology. Starting with adaptive front-lighting systems via Matrix LED systems, high-resolution headlamps will provide more safety in road traffic in the near future. For the implementation of high-resolution headlamps various spatial light modulators and light generating technologies can be applied. The emitted light of the light source is directed via an illumination optics onto the modulator and a projection optics is applied to image the spatial light modulator into the traffic area. The formerly mechatronic systems are thus increasingly become optomechatronic systems. Therefore, the optic design must be taken into account in the early development phase of these systems. In this paper we present a methodical approach to describe the optic design for optomechatronic systems. This approach can be used to develop efficient and high-intensity optomechatronic systems using various spatial light modulators and light generating technologies. Conclusively we demonstrate an exemplary application of the methodology on a high-resolution projection module.

Original languageEnglish
Pages (from-to)2547-2556
Number of pages10
JournalProceedings of the International Conference on Engineering Design, ICED
Volume1
Issue number1
E-pub ahead of print26 Jul 2019
DOIs
Publication statusPublished - Jul 2019
Event22nd International Conference on Engineering Design, ICED 2019 - Delft, Netherlands
Duration: 5 Aug 20198 Aug 2019

Keywords

  • Mechatronics
  • Optimisation
  • Product modelling / models

ASJC Scopus subject areas

  • Engineering (miscellaneous)
  • Industrial and Manufacturing Engineering
  • Modelling and Simulation

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