Probabilistic Short-Term Sky Image Forecasting Using VQ-VAE and Transformer Models on Sky Camera Data
Chingiz Seyidbayli, Soheil Nezakat, Andreas Reinhardt,
MDPI Jimaging, 12, 165.
CASCAR: Clausthal All Sky Camera Recordings
Andreas Reinhardt, Chingiz Seyidbayli,
Zenodo. https://doi.org/10.5281/zenodo.18657514
A review of acoustic systems for insect monitoring: From recording technologies to species recognition performance
Bárbara Fengler, Chingiz Seyidbayli, Andreas Reinhardt, Mina Anders, Catrin Westphal,
Ecological Informatics, 95.
Acoustic Trap Design for Biodiversity Detection
Chingiz Seyidbayli, Bárbara Fengler, Daniel Szafranski, Andreas Reinhardt,
MDPI IoT 6, 58.
Bit Depth in Energy Consumption: Comparing 32-Bit and 64-Bit Operating System Architectures in Raspberry Pi Systems
Chingiz Seyidbayli
GI/ITG KuVS Fachgespräch Sensornetze: 11. und 12. September 2025, Clausthal-Zellerfeld
Potentials and Challenges of Ecoacoustics for Environmental Monitoring: A Small Field Study
Davis Rakhshan, Lucas Bublitz, Jan Lueken, Chingiz Seyidbayli, Andreas Reinhardt, Ulf Kulau
21st GI/ITG KuVS Fachgespräch “Sensornetze” (FGSN)
Breast cancer detection using transfer learning based hybrid convolutional neural network models
Chingiz Seyidbayli, Cenk Ulu
Master Thesis, Graduate School of Science and Engineering, Yildiz Tehnical University
Comparison of Machine Learning Algorithms for EMG Signal Classification
Chingiz Seyidbayli, Fedi Salhi, Erhan Akdoğan
Periodicals of Engineering and Natural Sciences
DIGITALIZATION SYSTEM OF PATHOLOGY SAMPLES
WO2023211411A1
SAIM BALIN, GÜLFIZE COŞKUN, HASAN ŞAHİN, CHINGIZ SEYIDBAYLI
The invention relates to a system for digitizing pathology samples, which enables the distance between the preparation and the objective to be adjusted automatically according to the thickness of the preparation, which occurs as a result of the overlapping of cells and/or tissues while spreading or dripping the samples on the slide, and increasing the image quality of the sample by increasing the depth of focus during the scanning process.The invention relates to a system for digitizing pathology samples, which enables the distance between the preparation and the objective to be adjusted automatically according to the thickness of the preparation, which occurs as a result of the overlapping of cells and/or tissues while spreading or dripping the samples on the slide, and increasing the image quality of the sample by increasing the depth of focus during the scanning process.
