Fluidized Bed Granulation Compatible Miniaturized Rechargeable Energy Supply for a Wireless Sensor Particle

Fluidized Bed Granulation Compatible Miniaturized Rechargeable Energy Supply for a Wireless Sensor Particle

Offizieller Titel Deutsch Wirbelschichtreaktor kompatible, miniaturisierte wiederaufladbare Energieversorgung für ein drahtloses Sensorpartikel

 

Official Titel English: Fluidized Bed Granulation Compatible Miniaturized Rechargeable Energy Supply for a Wireless Sensor Particle

 

Task Description / Aufgabenstellung

## Description This project selects, prototypes, and characterizes a environmental-tolerant, miniaturized, rechargeable energy supply for the sensor particle that can be charged, and that meets the temperature, size, mass, and energy-budget constraints of the device. It focusses on inductive charging technologies optimized for mentioned parameters. Two things make this hard. Common rechargeable cells are not rated for the temperatures inside the reactor, and the device mass directly affects whether the particle fluidizes like the product. Prior work in the project produced an RF resonator design for wireless energy transfer and an inductive charging concept, but no validated storage solution. ## Sub-tasks ### Previous tasks - Systematic RF resonator design for wireless energy transfer. - Arbitrary inductive charging concept. ### Current tasks - Investigation on suitable energy storage and recharging mechanism ### Objectives and possible tasks - Survey and compare storage options against environmental (temperature) tolerance, energy density, size and mass, cycle life, and charge method. - Select and justify a solution; design the charge path together with the inductive charging. - Prototype and bench-test charge and discharge across the temperature range; characterize thermal behavior and cycle life. - Compute an energy budget against the measurement duty cycle and estimate device lifetime. - Documentation.

Supervisor

Name:

 

Thesis Type MA/BA/PA:

 

Student ID / Matrikelnummer:

 

Field of Study / Studiengang:

 

Official start-date / Offizieller Beginn:

 

Final-report-due /Abgabe:

 

Spotlight-presentations:

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Finale presentation / Abschlusspräsentation

 

Zweitprüfer / Second Examiner

 

Confidential / Vertraulich

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Maximilian Becker, M.Sc. Wissenschaftlicher Mitarbeiter || Scientific Associate Technische Universität Hamburg (TUHH) - Institut für Mechatronik im Maschinenbau M -4- Eißendorfer Straße 38 Raum O 0.015 D-21073 Hamburg Telefon: +49 40 30601 4215 E-Mail: maximilian.becker@tuhh.de http://www.mechatronik.hamburg https://www.tuhh.de/imek

Zeitplanung:

Checklist

Helpful links:

Document Upload Final Thesis / Dokumentenabgabe Abschlussdokument

File of final presentation / Dokumentenabgabe Abschlusspräsentation

Link for further files / Link für weitere Dokumente

 

Institut für Mechatronik im Maschinenbau (iMEK), Eißendorfer Straße 38, 21073 Hamburg