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  <abstract type="Summary">In summary, this dissertation presents a fundamental sensor development according to newly formulated sampling theorem (Object Specific Exposure - OSE) from an ocean engineering perspective. It provides a fast method based on a service-oriented optical sensor system that allows reliable statements regarding the state of aquatic (eco-) systems (turbidity and dissolved organic carbon) with feasible sensor effort during the field measurement. The technological approach presented in this thesis helps to increase the informative value of sensor data while reducing the effort for the user.&lt;eng&gt;</abstract>
  <abstract type="Summary">Zusammenfassend stellt diese Dissertation eine grundlegende Sensorentwicklung nach einem neu formulierten Monitoring-Theorem (Object Specific Exposure - OSE) aus meerestechnischer Sicht dar. Vorgestellt wird eine Methode, die auf Basis eines serviceorientierten optischen Sensorsystems Aussagen über den Zustand von aquatischen (Öko-) Systemen (Trübung und Gehalt gelöster organischer Verbindungen) mit geringem methodischen Sensoraufwand im Feld ermöglicht.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Robert Schima</note>
  <note>GutachterInnen: Mathias Paschen (Universität Rostock) ; Peter Dietrich (Universität Tübingen) ; Ralf Bill (Universität Rostock) ; Andreas Rauh (Universität Rostock)</note>
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