Preparing travel time data can be a time-consuming process, which greatly limits the flexibility of transport simulation models. In the current paper, we present an approach to integrate a routing engine locally in an...
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The development stage of laser facility control system is a complex system engineering, which involves the collaborative research and development of multi-department and multi-disciplinary personnel in the long-term d...
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Game-based simulated learning environments that leverage extended reality technologies are expected to become a cornerstone of STEM workforce development as they offer accessible, flexible, and adaptable alternatives ...
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ISBN:
(纸本)9783031741371;9783031741388
Game-based simulated learning environments that leverage extended reality technologies are expected to become a cornerstone of STEM workforce development as they offer accessible, flexible, and adaptable alternatives to traditional physical spaces. While these environments may be designed to provide social and experiential learning opportunities that can support students' acquisition, practice, and transfer of fundamental skills, there is much research needed to understand how to capture, model, and transfer trace data to inform these support scaffolds. Some conceptual theories and explanatory models of immersive virtual reality learning are beginning to emerge, but either fail to account for the role of trace data or still require empirical testing. This paper briefly describes an immersive virtual reality (IVR) study that examines the development of basic chemistry lab skills for (N = 45) high-school students using the VR game HoloLAB Champions. Participants completed multiple chemistry lab skill training exercises in a physical lab and in the game-based simulation lab space. During this experiment, participants' multimodal data were captured including self-reports, audio and video recordings, event-based data, and gestures. We discuss the challenges of modeling and transferring various trace data between the real and simulated world experiences and what this may entail for the future development of adaptive and intelligent scaffolds.
This paper presents the physical component modeling and simulation of a five degree of freedom articulated robot arm. Robots are used extensively in manufacturing and field like mines, space, military, medicine, hospi...
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With the rapid development of computer technology, the era of high-speed data has arrived. In this era, in-depth research on high-frequency digital models is required. This article first conducts a detailed analysis o...
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Based on analyzing characteristics of high-rise buildings elevator traffic system, the Markov network queuing theory was used to develop elevator evacuation traffic model and the analytic solutions of the model were c...
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Hospitals currently face numerous challenges in managing their pharmacy operations efficiently. While Business Process Reengineering (BPR) has been proposed as a solution, its implementation in healthcare is more comp...
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The proceedings contain 10 papers. The special focus in this conference is on Internet of Everything. The topics include: Parallelism Everywhere: The Internet of Everything and Parallel Computing;ioV simulation Archit...
ISBN:
(纸本)9783031844256
The proceedings contain 10 papers. The special focus in this conference is on Internet of Everything. The topics include: Parallelism Everywhere: The Internet of Everything and Parallel Computing;ioV simulation Architecture for Software-Defined Vehicular Fog Network Orchestration;toward modeling of Flooding Attacks Targeting Massive IoT Networks;using the Internet of Everything for Machine-Learning-Based computer System Design and Optimization;enhancing Urban Freight Delivery: A Machine Learning Approach to Predicting Delivery Speed;soil-Based Thermoelectric Energy Harvesting System for IoT Devices;a Methodology for Measuring Selected Performance Parameters of Smartphone-Based Vehicle-to-Pedestrian and Pedestrian-to-Infrastructure Communication;wordPress Architecture Modernization Projects.
The Insulated Gate Bipolar Transistor (IGBT) is a crucial component in inverter systems, and accurately modeling the IGBT in the Controller Hardware-in-the-Loop (CHIL) simulation of inverters is a key challenge. Based...
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This work is devoted to researching technological equipment for homogenization. It has been found that the devices for obtaining finely dispersed emulsions, which exist today, need to be modernized to reduce the energ...
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This work is devoted to researching technological equipment for homogenization. It has been found that the devices for obtaining finely dispersed emulsions, which exist today, need to be modernized to reduce the energy indicators of homogenization and increase the quality characteristics of the finished provision. As a result of the study, it has been established that the pulsating homogenizer allows for obtaining high homogeneity of the dispersed phase with low energy costs for the process. Although this study was conducted on a milk emulsion, the results can be used for other binary dispersion emulsions. The emulsion is dispersed in the pulsating homogenizer using the emulsion velocity gradient caused by the pulsating vibration of the shock piston. To calculate the hydrodynamic parameters of milk emulsion pumping speed, computermodeling was performed using software that allows for effective analysis of the homogenization process and has a special software package for this purpose - Ansys Workbench. With the help of computermodeling and calculations in ANSYS Workbench, the quality of homogenization due to processing milk in the pulsation homogenizer was determined. Experimental studies have shown that the average diameter of milk fat globules after homogenization in the pulsation homogenizer is 0.8 mu m, which fully meets today's requirements.
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