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Jordan / Tarasov / Shurina | High-Performance Computing Systems and Technologies in Scientific Research, Automation of Control and Production | E-Book | www.sack.de
E-Book

E-Book, Englisch, 252 Seiten

Reihe: Springer Nature Proceedings Computer Science

Jordan / Tarasov / Shurina High-Performance Computing Systems and Technologies in Scientific Research, Automation of Control and Production

14th International Conference, HPCST 2024, Barnaul, Russia, May 17–18, 2024, Revised Selected Papers
Erscheinungsjahr 2026
ISBN: 978-3-032-20325-0
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark

14th International Conference, HPCST 2024, Barnaul, Russia, May 17–18, 2024, Revised Selected Papers

E-Book, Englisch, 252 Seiten

Reihe: Springer Nature Proceedings Computer Science

ISBN: 978-3-032-20325-0
Verlag: Springer International Publishing
Format: PDF
Kopierschutz: 1 - PDF Watermark



This book constitutes the revised selected papers of the 14th International Conference on High-Performance Computing Systems and Technologies in Scientific Research, Management and Production Automation, HPCST 2024, held in Barnaul, Russia, during May 17–18, 2024.

The 19 full papers included in this book were carefully reviewed and selected from 79 submissions. They are organized into the following topical sections: Hardware for High-Performance Computing and Signal Processing; Information Technologies and Computer Simulation of Physical Phenomena; Computing Technologies in Data Analysis and Decision Making; and Information and Computing Technologies in Automation and Control Science.

Jordan / Tarasov / Shurina High-Performance Computing Systems and Technologies in Scientific Research, Automation of Control and Production jetzt bestellen!

Zielgruppe


Research

Weitere Infos & Material


.- Hardware for High-Performance Computing and Signal Processing.
.- Characteristics of Processor Components Implemented as a Part of FPGA
.- Selecting Optimal Signal Transformation Block for Real-Time Speech Enhancement Using Deep Neural Network.
.- Locating the Specific Melodic Constructs in a Midi Files Library Using Digital Audio Fingerprints.
.- Multithreaded Soft Processor Core with RISC-V Architecture.
.- Information Technologies and Computer Simulation of Physical Phenomena.
.- Study of Structural-Phase Transformations in Matrix Homogeneous Compositions of Al@Ni Core-Shell Nanoparticles by MD-Simulation of SHS.
.- Numerical Simulation of Thawing Processes in Frozen Soil under Natural Effects and Anthropogenic Effects Associated with Well Operations.
.- Development of a Simulation and Laboratory Test Bench for Studying the Energy Characteristics of a Micro Hydroelectric Power Plant.
.- Computing Technologies in Data Analysis and Decision Making.
.- Computer Modeling of the Surface of Unwrapped Fabric Using Computer Tools for Production Automation.
.- Algorithms for Recognition that Rely on the Creation of One-Dimensional Threshold Rules.
.- Search of Neural Network Architecture for the Problem of Estimating Lipophilicity of Small Organic Compounds.
.- 1C Corporate Implementation Technology in ERP-System Deployment Projects in Russian and Localized Foreign Companies.
.- Algorithms for Efficient Aspect Analysis of Scientific Publications Based on Seman-tic Graph Clustering.
.- Model for Forming a National University Ranking System in Kyrgyzstan.
.- Evaluating the Effectiveness of Voice Conversion Attacks on a ResNet-Based Text-Independent Speaker Verification System.
.- Information and Computing Technologies in Automation and Control Science    Computer Modeling of the Surface of Unwrapped Fabric.
.- Collector Module of Mechatronic Microclimate Control System.
.- Potential Control Strategy of Mobile Robot in Dynamic Environment Based on Mod-ified Bug Algorithm.
.- Computer-Assisted Measuring System for Study of Aluminum-Nickel Alloys.
.- Development and Research of Genetic Programming Algorithm for Structural-Parametric Identification of Dynamic Systems.
.- Study of Power Quality and Control Strategies for Excavator Drives Using Asymmet-rical Direct Frequency Converters.



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