Jagjit Singh Dhatterwal, Kuldeep Singh Kaswan, Parveen Berwal, Rajesh Goel
IoT Applications in Geotechnical Engineering
Jagjit Singh Dhatterwal, Kuldeep Singh Kaswan, Parveen Berwal, Rajesh Goel
IoT Applications in Geotechnical Engineering
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This book offers a comprehensive overview of how the Internet of Things is reshaping the Management of Soil, Geotechnical Engineering, and Environmental Observations. It equips the reader with the necessary tools to apply IoT solutions to farming processes and increase the effectiveness of construction.
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This book offers a comprehensive overview of how the Internet of Things is reshaping the Management of Soil, Geotechnical Engineering, and Environmental Observations. It equips the reader with the necessary tools to apply IoT solutions to farming processes and increase the effectiveness of construction.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 352
- Erscheinungstermin: 4. Juli 2025
- Englisch
- Abmessung: 229mm x 152mm
- Gewicht: 453g
- ISBN-13: 9781032884080
- ISBN-10: 1032884088
- Artikelnr.: 73142910
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 352
- Erscheinungstermin: 4. Juli 2025
- Englisch
- Abmessung: 229mm x 152mm
- Gewicht: 453g
- ISBN-13: 9781032884080
- ISBN-10: 1032884088
- Artikelnr.: 73142910
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
Jagjit Singh Dhatterwal is an Associate Professor with the Department of Artificial Intelligence & Data Science, Koneru Lakshmaiah Education Foundation, Vaddeswaram, Andhra Pradesh, India. He is a Member of Computer Science Teacher Association (CSTA), New York, USA, International Association of Engineers (IAENG), and Hong Kong, IACSIT (International Association of Computer Science and Information Technology), USA. He is also a Professional Member of the Association of Computing Machinery, USA, IEEE, and a Life Member of the Computer Society of India. His areas of interest include Artificial Intelligence, BCI, Cyborg and Multi-Agents Technology. He has several publications as books, journal papers and conference papers. Parveen Berwal is a Professor with the Civil Engineering Department at Galgotias College of Engineering & Technology, Greater Noida. He is an M.Tech and PhD in Civil Engineering, with over 12 years of versatile experience in the field. He has 11 patents to his name and has contributed to numerous prestigious accreditations like NAAC, NBA, and NIRF. He has published more than 15 papers in several journals and international conferences. He is an active member of IRED (New York) and IAENG (Hong Kong). His areas of interest include highway construction, utilization of recycled aggregate, and use of waste material in civil engineering. Kuldeep Singh Kaswan is a Professor at the School of Computer Science & Engineering, Galgotias University, Greater Noida, Uttar Pradesh, India. His contributions focus on BCI, Cyborgs, and Data Science. He has thirteen years of experience working with global universities like Amity University, Noida, India; Gautam Buddha University, Greater Noida; and PDM University, Bahadurgarh, India. He is also a senior member of IEEE, the Computer Science Teacher Association (CSTA), New York, USA, the International Association of Engineers (IAENG), Hong Kong, and IACSIT, USA. He has published several books, journal chapters and conference papers. Rajesh Goyal is a Professor at the School of Construction and Dean at NICMAR University, Pune. He graduated in Civil Engineering from NIT Kurukshetra in 1998 and holds a PhD from IIT Roorkee in year 2007. He is a Gold Medalist in M.Tech. (Structures) from Kurukshetra University, Kurukshetra. His main area of research is high rise construction, construction management, new construction material and wind/tornado effects on structures. He has conducted research in Germany, Japan and Czech Republic as Post-Doctoral Fellow under prestigious DAAD fellowship of Germany, MEXT Fellowship of Japan and Academy of Sciences fellowship of Czech Republic. Presently he is a collaborative researcher at Wind Engineering Research Centre, Tokyo Polytechnic University, Japan. He is also a visiting faculty of Selinus University, Italy. He has more than 50 research papers to his credit, published in national and international conferences and journals. Presently he is serving as Professor in School of Construction, NICMAR University, Pune, India.
1. Relevance of IoT for Soil Superiority
2. Assessment of Soil Humidity Content using Internet of Things and
Conventional Systems
3. Soil Statistics Anthology for Investigation and Relevance Using IoT
4. Sensor in Geotechnical Engineering for Structural Physical Condition
Monitoring
5. IoT for Conservation Requirement Examining the Foundation of
Households
6. IoT-Based Geotechnical Examining Techniques Incorporating Automatic
Practices for Statistics Procurement and Amplification
7. Internet of Things Based Slope Examining in Geotechnical Engineering
8. IoT application in Examining the Various Parameter of Soil and
Ambient Constraints
9. Revealing and Location of Rock Falls via Seismic and Infrasound
Measuring Device
10. Advancing Slope Immovability in Undeveloped Cast Mines via Machine
Learning Based IoT Structure
11. Internet of Things-Based Approach Employing Examining for Probable
Landslides
12. Patterns and Developments in Internet of Things (IoT) Investigation:
Future Efforts in Geotechnical Engineering
13. Case Studies on Smart Geotechnical Engineering
2. Assessment of Soil Humidity Content using Internet of Things and
Conventional Systems
3. Soil Statistics Anthology for Investigation and Relevance Using IoT
4. Sensor in Geotechnical Engineering for Structural Physical Condition
Monitoring
5. IoT for Conservation Requirement Examining the Foundation of
Households
6. IoT-Based Geotechnical Examining Techniques Incorporating Automatic
Practices for Statistics Procurement and Amplification
7. Internet of Things Based Slope Examining in Geotechnical Engineering
8. IoT application in Examining the Various Parameter of Soil and
Ambient Constraints
9. Revealing and Location of Rock Falls via Seismic and Infrasound
Measuring Device
10. Advancing Slope Immovability in Undeveloped Cast Mines via Machine
Learning Based IoT Structure
11. Internet of Things-Based Approach Employing Examining for Probable
Landslides
12. Patterns and Developments in Internet of Things (IoT) Investigation:
Future Efforts in Geotechnical Engineering
13. Case Studies on Smart Geotechnical Engineering
1. Relevance of IoT for Soil Superiority
2. Assessment of Soil Humidity Content using Internet of Things and
Conventional Systems
3. Soil Statistics Anthology for Investigation and Relevance Using IoT
4. Sensor in Geotechnical Engineering for Structural Physical Condition
Monitoring
5. IoT for Conservation Requirement Examining the Foundation of
Households
6. IoT-Based Geotechnical Examining Techniques Incorporating Automatic
Practices for Statistics Procurement and Amplification
7. Internet of Things Based Slope Examining in Geotechnical Engineering
8. IoT application in Examining the Various Parameter of Soil and
Ambient Constraints
9. Revealing and Location of Rock Falls via Seismic and Infrasound
Measuring Device
10. Advancing Slope Immovability in Undeveloped Cast Mines via Machine
Learning Based IoT Structure
11. Internet of Things-Based Approach Employing Examining for Probable
Landslides
12. Patterns and Developments in Internet of Things (IoT) Investigation:
Future Efforts in Geotechnical Engineering
13. Case Studies on Smart Geotechnical Engineering
2. Assessment of Soil Humidity Content using Internet of Things and
Conventional Systems
3. Soil Statistics Anthology for Investigation and Relevance Using IoT
4. Sensor in Geotechnical Engineering for Structural Physical Condition
Monitoring
5. IoT for Conservation Requirement Examining the Foundation of
Households
6. IoT-Based Geotechnical Examining Techniques Incorporating Automatic
Practices for Statistics Procurement and Amplification
7. Internet of Things Based Slope Examining in Geotechnical Engineering
8. IoT application in Examining the Various Parameter of Soil and
Ambient Constraints
9. Revealing and Location of Rock Falls via Seismic and Infrasound
Measuring Device
10. Advancing Slope Immovability in Undeveloped Cast Mines via Machine
Learning Based IoT Structure
11. Internet of Things-Based Approach Employing Examining for Probable
Landslides
12. Patterns and Developments in Internet of Things (IoT) Investigation:
Future Efforts in Geotechnical Engineering
13. Case Studies on Smart Geotechnical Engineering