<p><P>Wireless Communication in Underground Mines: RFID-based Sensor Networking focuses on the recent advances in wireless communication technologies for underground mines and other hazardous areas. This comprehensive book provides a unified foundation of wireless communication systems for transmiss
Wireless Communication in Underground Mines: RFID-Based Sensor Networking
โ Scribed by L. K. Bandyopadhyay, S. K. Chaulya, P. K. Mishra (auth.)
- Publisher
- Springer US
- Year
- 2010
- Tongue
- English
- Leaves
- 499
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Wireless Communication in Underground Mines: RFID-based Sensor Networking focuses on the recent advances in wireless communication technologies for underground mines and other hazardous areas. This comprehensive book provides a unified foundation of wireless communication systems for transmission of data, voice and video, and incorporates intrinsically safe design and development aspects of circuits, which are essential for hazardous areas. Topics covered in this book include design and development of an intrinsically safe trapped miner communication system, shaft communication system, line-of-sight communication system, mine-wide communication system, and web based information system. RFID technology is also discussed in detail, including compatible system specific embedded software for underground applications and program codes for different devices.
Wireless Communication in Underground Mines: RFID-based Sensor Networking covers a wide range of wireless communication systems as well as wireless sensor networking, radio frequency identification devices, and intrinsically safe circuit design techniques for underground mines and other hazardous areas. Designed for practicing engineers, the book incorporates all the technical details starting from design, fabrication, assembling, intrinsic safety analysis, testing, laboratory and field trials, deployment and operations of different wireless communication systems.
โฆ Table of Contents
Front Matter....Pages i-xxvii
Mine Communication Technique....Pages 1-64
Evaluation of Suitable Frequency....Pages 65-71
Trapped Miner Communication....Pages 73-90
Shaft Communication....Pages 91-104
Line-of-Sight Communication....Pages 105-120
Mine-Wide Communication....Pages 121-140
Web-Based Information and Decision Support System for Mining Industry....Pages 141-151
ZigBee Technology: A Unique Wireless Sensor Networking Solution....Pages 153-174
Wireless Information and Safety System for Mines....Pages 175-262
Programming of RFID Devices....Pages 263-282
Tracking and Monitoring Software....Pages 283-298
Intrinsic Safety for Hazardous Area....Pages 299-378
Back Matter....Pages 379-477
โฆ Subjects
Communications Engineering, Networks; Computer Communication Networks; Microwaves, RF and Optical Engineering; Circuits and Systems
๐ SIMILAR VOLUMES
Underground mines require fool-proof, mine-wide communication systems for smooth functioning of mine production and worker safety. Proper and reliable communication systems not only decrease machine break down time, but more importantly provide immediate transmission of messages from the underground
<P>In the past several years, there has been an increasing trend in the use of Radio Frequency Identification (RFID) and Wireless Sensor Networks (WSNs) as well as in the integration of both systems due to their complementary nature, flexible combination, and the demand for ubiquitous computing. As
<p><p>The Wireless Identification and Sensing Platform (WISP) is the first of a new class of RF-powered sensing and computing systems. Rather than being powered by batteries, these sensor systems are powered by radio waves that are either deliberately broadcast or ambient. Enabled by ongoing exponen
<p><p>The Wireless Identification and Sensing Platform (WISP) is the first of a new class of RF-powered sensing and computing systems. Rather than being powered by batteries, these sensor systems are powered by radio waves that are either deliberately broadcast or ambient. Enabled by ongoing exponen