A comprehensive treatment of wireless underground channel modeling is presented in this chapter. The impacts of the soil on bandwidth and path loss are analyzed. A mechanism for the UG channel sounding and multipath characteristics analysis is discussed. Moreover, novel time-domain impulse response model for WUC is reviewed with the explanation of model parameters and statistics. Furthermore, different types of the through-the-soil wireless communications are surveyed. Finally, the chapter concludes with discussion of the UG wireless statistical model and path loss model for through-the-soil wireless communications in decision agriculture. The model presented in this chapter is also validated with empirical data
Wireless Underground Communication (WUC) is an emerging field that is being developed continuously. ...
Wireless underground communications is mainly characterized by the effects of soil moisture on anten...
Wireless Underground Sensor Networks (WUSNs) are an emerging type of wireless sensor networks (WSNs)...
Wireless underground sensor networks (WUSNs) constitute one of the promising application areas of t...
The UG channel bandwidth and capacity are vital parameters in wireless underground communication sys...
Wireless Underground Sensor Networks (WUSNs) are natural extensions of the established Wireless Sens...
Wireless underground sensor networks (WUSNs) are becoming ubiquitous in many areas and designing rob...
Wireless Underground Sensor Networks (WUSNs) are natural extensions of the established Wireless Sens...
In this chapter, a thorough treatment of the modulation schemes for UG Wireless is presented. The ef...
In this chapter, wireless underground (UG) communications are introduced. A detailed overview of WUC...
Unique interactions between soil and communication components in wireless underground communications...
The recent emergence of Internet of Underground Things (IOUT) in many areas including environment an...
Abstract. Many applications for irrigation management and environment monitoring exploit buried sens...
In this paper, a path loss model is developed to predict the impact of soil type, soil moisture, ope...
Radio signal propagation modeling plays an important role in the design of wireless communication sy...
Wireless Underground Communication (WUC) is an emerging field that is being developed continuously. ...
Wireless underground communications is mainly characterized by the effects of soil moisture on anten...
Wireless Underground Sensor Networks (WUSNs) are an emerging type of wireless sensor networks (WSNs)...
Wireless underground sensor networks (WUSNs) constitute one of the promising application areas of t...
The UG channel bandwidth and capacity are vital parameters in wireless underground communication sys...
Wireless Underground Sensor Networks (WUSNs) are natural extensions of the established Wireless Sens...
Wireless underground sensor networks (WUSNs) are becoming ubiquitous in many areas and designing rob...
Wireless Underground Sensor Networks (WUSNs) are natural extensions of the established Wireless Sens...
In this chapter, a thorough treatment of the modulation schemes for UG Wireless is presented. The ef...
In this chapter, wireless underground (UG) communications are introduced. A detailed overview of WUC...
Unique interactions between soil and communication components in wireless underground communications...
The recent emergence of Internet of Underground Things (IOUT) in many areas including environment an...
Abstract. Many applications for irrigation management and environment monitoring exploit buried sens...
In this paper, a path loss model is developed to predict the impact of soil type, soil moisture, ope...
Radio signal propagation modeling plays an important role in the design of wireless communication sy...
Wireless Underground Communication (WUC) is an emerging field that is being developed continuously. ...
Wireless underground communications is mainly characterized by the effects of soil moisture on anten...
Wireless Underground Sensor Networks (WUSNs) are an emerging type of wireless sensor networks (WSNs)...