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The cover of “Power Engineering, Control and Information Technologies in Geotechnical Systems” - Google Books.

"Power Engineering, Control and Information Technologies in Geotechnical Systems" was published by Taylor & Francis Group in 2015 - Boca Raton, the book is classified in Technology & Engineering genre, it has 208 pages and the language of the book is English.


“Power Engineering, Control and Information Technologies in Geotechnical Systems” Metadata:

  • Title: ➤  Power Engineering, Control and Information Technologies in Geotechnical Systems
  • Authors:
  • Language: English
  • Number of Pages: 208
  • Is Family Friendly: Yes - No Mature Content
  • Publisher: Taylor & Francis Group
  • Publish Date:
  • Publish Location: Boca Raton
  • Genres: Technology & Engineering

“Power Engineering, Control and Information Technologies in Geotechnical Systems” Subjects and Themes:

Edition Identifiers:

AI-generated Review of “Power Engineering, Control and Information Technologies in Geotechnical Systems”:


Snippets and Summary:

Long-term economic growth is only possible with the application of technological improvements in the use of energy. This book is discussing geotechnical systems with large potential for enhancing energy efficiency.

"Power Engineering, Control and Information Technologies in Geotechnical Systems" Description:

Google Books:

Efficient and rational use of energy is one of the main challenges at present to develop a sustainable society. Long-term economic growth is only possible with the application of technological improvements in the use of energy. This book is discussing geotechnical systems with large potential for enhancing energy efficiency. Modern manufacturing processes are complex and make ever increasing demands on the use of energy. This work involves multidisciplinary collaboration and research on aspects of energy use in geotechnical systems. The work provides many practical examples and illustrative material and it effectively connects theoretical and practical aspects of efficiency improvement of geotechnical systems. Benefiting from authors’ extensive experience in industry and academia it brings together comprehensive technical information on reducing energy consumption. It provides valuable information covering operation of mine equipment and installations and features some topics never previously published in geotechnical courses. The book is appropriate for students, researches, professionals and teachers interested in geotechnical systems and improving its efficiency. Field of knowledge – energy efficiency of geotechnical systems

Open Data:

Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- Preface -- Traction and energy characteristics of no-contact electric mining locomotives with AC current thyristor converters -- Universal model of the galvanic battery as a tool for calculations of electric vehicles -- Binarization algorithm of rock photo images on inhomogeneous background -- Compensation of the cogging torque by means of control system for transverse flux motor -- Control of tandem-type two-wheel vehicle at various notion modes along spatial curved lay of line -- Independent power supply of menage objects based on biosolid oxide fuel systems -- The use of asymmetric power supply during the procedure of equivalent circuit parameters identification of squirrel-cage induction motor -- Energy indexes of modern skip lifting plants of coal mines -- Informational and methodological support for energy efficiency control -- Implementation of the insulation resistance control method for high-voltage grids of coal mines -- Comparative analysis of methods for estimating the Hurst acoustic signal whenever feed rate control in jet mills provided -- Automatic control of coal shearer providing effective use of installed power -- Designing algorithm for coal shearer control to provide decrease in specific power consumption -- Optimization of fine grinding on the acoustic monitoring basis -- Flexible couplings with rubber-cord shells in heavy machinery drives -- Determination of optimal configuration of effective energy supply system with multiple sources -- Simulation of the energy-effective operating modes of the mine main pumping -- A new method to solve a continuous facility location problem under uncertainty -- Identification of stabilizing modes for the basic parameters of drilling tools

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