Jahr Name
2022

European Digital Innovation Hubs & their activities for SMEs

Rainer Günzler

Smart Systems Integration 2022, 26. – 28. April, Grenoble, Frankreich

2022

Determination of the piezoelectric d33 coefficient for MIS type aluminum nitride thin films

D. Becker, Dr. A. Bittner, Prof. Dr. A. Dehé

MNE Eurosensors 2022, 19. – 23. September, Leuven, Belgien

2022

Infrared Spectroscopy–Quo Vadis?

M. Hlavatsch, J. Haas, R. Stach, V. Kokoric, A. Teuber, M. Dinc, B. Mizaikoff

Applied Sciences 12 (15), 7598

2022

Modellbasiertes reaktives Fügen

A. Belguanche, A. Schumacher, N. Desch, A. Benachour, J. Böttcher, G. Dietrich, E. Pflug, I. Spies, P. Meyer, B. Folkmer, S. Knappmann, P. Farber, J. Gräbel, M. Lake, A. Dehé

9. GMM-Workshop Mikro-Nano-Integration, 21. – 22. November, Aachen, Deutschland

2022

Modellierung und Simulation des reaktiven Fügeprozesses

A. Schumacher, B. Folkmer, S. Knappmann, A. Dehé, A. Belguanche, A. Benachour, P. Farber, N. Desch, M. Lake, E. Pflug, J. Böttcher, G. Dietrich

TechnologyMountains InnovationForum Smarte Technologien & Systeme, 31. März, Donaueschingen, Deutschland

2022

A Lightweight Mutual Authentication Protocol Based on Physical Unclonable Functions

S. Abdolinezhad, A. Sikora

IEEE International Symposium on Hardware Oriented Security and Trust (HOST), pp. 161-164, doi: 10.1109/HOST54066.2022.9840132

2022

Design, Simulation, and Analysis of Physical Unclonable Functions with MEMS AlN Cantilevers

S. Abdolinezhad, A. Sikora, A. Bittner

Smart Systems Integration (SSI), pp. 1-6, doi: 10.1109/SSI56489.2022.9901420

2022

Analyzing siRNA Concentration, Complexation and Stability in Cationic Dendriplexes by Stem-Loop Reverse Transcription-qPCR

M. Neugebauer, C. E. Grundmann, M. Lehnert, F. von Stetten, S. M. Früh, R. Süss

Pharmaceutics 2022, 14, 1348, doi: 10.3390/pharmaceutics14071348

2021

Replikation von Zwei-Photonen-Lithographie-Strukturen für die Produktion strukturierter Kunststoffmikrooptiken in der Tumordiagnostik

Stefan Wagner, Serhat Sahakalkan

photonics Flashlight, Fachmagazin

2021

Development and Construction of a Parameterizable Condition Classification System for Electromagnetic Proportional Valves using Neuronal Networks (Nemoh / Neuromorphe Hardware für Anwendungen mit KI)

D. Rossbach, M. Rüb, M. Kuderer, Y. Manoli

MikroSystemTechnik Congress 2021, 8-10 Nov. 2021, Stuttgart-Ludwigsburg, Germany

Kurzfassung einblenden

In this paper the development of a compact condition classification system for electromagnetic proportional valves is shown. It allows the generation of training data as well as a fast testing and comparison of different trained neuronal networks. By using quantization and pruning, a neuronal network with drastically reduced complexity has been created, so an FPGA implementation was possible. The developed and implemented network shows a very high classification rate and can distinguish 12 different error reasons of the valves. The system requires the measurement of the supply current only, which allows a simple integration of such a false detection circuitry into existing systems. In the future, the system can be modified easily, e.g. to use and test a hardware based AI accelerator instead of the FPGA implementation.

 

Link zum Paper

2021

Entwurf einer CMOS-integrierten, rauscharmen Stromausleseschaltung mit niedriger Eingangskapazität für die medizinische Diagnostik via biologischer Nanoporen

M. Amayreh, S. Elsaegh, N. Butz, M. Kuderer, Y. Manoli

MikroSystemTechnik Kongress 2021, 08.11.2021 - 10.11.2021, Stuttgart-Ludwigsburg, Deutschland


Link zum Paper

2021

A survey of machine-learning techniques for condition monitoringand predictive maintenance of bearings in grinding machines

S. Schwendemann, Z. Amjad, A. Sikora

Computers in Industry, Volume 125, Feb. 2021, 103380

Kurzfassung einblenden

It is important to minimize the unscheduled downtime of machines caused by outages of machine components in highly automated production lines. Considering machine tools such as, grinding machines, the bearing inside of spindles is one of the most critical components. In the last decade, research has increasingly focused on fault detection of bearings. In addition, the rise of machine learning concepts has also intensified interest in this area. However, up to date, there is no single one-fits-all solution for predictive maintenance of bearings. Most research so far has only looked at individual bearing types at a time.
This paper gives an overview of the most important approaches for bearing-fault analysis in grinding machines. There are two main parts of the analysis presented in this paper. The first part presents the classification of bearing faults, which includes the detection of unhealthy conditions, the position of the error (e.g. at the inner or at the outer ring of the bearing) and the severity, which detects the size of the fault. The second part presents the prediction of remaining useful life, which is important for estimating the productive use of a component before a potential failure, optimizing the replacement costs and minimizing downtime.

 

Link zum Paper

2021

Latency reduction for narrowband URLLC networks: a performance evaluation

A. Zubair, K. A. Nsiah, B. Hilt, J.-P. Lauffenburger, A. Sikora

Wireless Networks 27, 2577-2593

Kurzfassung einblenden

Fifth-generation (5G) cellular mobile networks are expected to support mission-critical low latency applications in addition to mobile broadband services, where fourth-generation (4G) cellular networks are unable to support Ultra-Reliable Low Latency Communication (URLLC). However, it might be interesting to understand which latency requirements can be met with both 4G and 5G networks. In this paper, we discuss (1) the components contributing to the latency of cellular networks and (2) evaluate control-plane and user-plane latencies for current-generation narrowband cellular networks and point out the potential improvements to reduce the latency of these networks, (3) present, implement and evaluate latency reduction techniques for latency-critical applications. The two elements we detected, namely the short transmission time interval and the semi-persistent scheduling are very promising as they allow to shorten the delay to processing received information both into the control and data planes. We then analyze the potential of latency reduction techniques for URLLC applications. To this end, we develop these techniques into the long term evolution (LTE) module of ns-3 simulator and then evaluate the performance of the proposed techniques into two different application fields: industrial automation and intelligent transportation systems. Our detailed evaluation results from simulations indicate that LTE can satisfy the low-latency requirements for a large choice of use cases in each field.

 

Link zum Paper

2021

A Novel Key Generation Method for Group-Based Physically Unclonable Function Designs

S. Abdolinezhad, L. Zimmermann, A. Sikora

MDPI Electronics, Volume 10, Issue 2. 2597, 1-12

Kurzfassung einblenden

In recent years, physically unclonable functions (PUFs) have gained significant attraction in IoT security applications, such as cryptographic key generation and entity authentication. PUFs extract the uncontrollable production characteristics of different devices to generate unique fingerprints for security applications. When generating PUF-based secret keys, the reliability and entropy of the keys are vital factors. This study proposes a novel method for generating PUF-based keys from a set of measurements. Firstly, it formulates the group-based key generation problem as an optimization problem and solves it using integer linear programming (ILP), which guarantees finding the optimum solution. Then, a novel scheme for the extraction of keys from groups is proposed, which we call positioning syndrome coding (PSC). The use of ILP as well as the introduction of PSC facilitates the generation of high-entropy keys with low error correction costs. These new methods have been tested by applying them on the output of a capacitor network PUF. The results confirm the application of ILP and PSC in generating high-quality keys.

 

Link zum Paper

2021

Reaktives Fügen von temperaturempfindlichen Dehnungssensoren

A. Schumacher, V. Shah, S. Steckemetz, G. Dietrich, E. Pflug, T. Hehn, S. Knappmann, A. Dehé, A. Leson

Journal of Materials Engineering and Performance, Band 30, pp. 7796-7804


Link to publication

2021

Reaktives Fügen von temperaturempfindlichen Dehnungssensoren

E. Pflug, A. Schumacher, G. Dietrich, S. Steckemetz, T. Hehn, S. Knappmann, A. Dehé, A. Leson

27. Neues Dresdner vakuumtechnisches Kolloquium (NDVaK), 17. - 18. März 2021, Online

2021

Telemetrische Verformungsmessung mit einem CMOS-integrierten Sensorchip

T. Hehn, H. Rietsche

Sensor und Test 2021, 04. - 06. Mai 2021, Online

2021

Joystick mit mehrachsigem Miniaturkraftsensor

T. Hehn

Innovationstag des Bundesministeriums für Wirtschaft und Energie (BMWi), 17.06.2021, Online

2021

Aufbau und Charakterisierung eines CMOS-integrierten Sensorsystems zur Messung von Verformungen

A. Schumacher, V. Shah, S. Knappmann, T. Hehn, A. Dehé

Mikrosystemtechnik-Kongress 2021, 9. - 10. November 2021, Ludwigsburg

2021

Multi-Axis Micro Force Sensor Based on a CMOS Integrated Chip

B. Folkmer, T. Hehn, M. Köhler, A. Willmann, D. Landler-Gärtner, A. Dehé

Mikrosystemtechnik-Kongress 2021, 9. - 10. November 2021, Ludwigsburg