Mobile sensor actuator networks have been applied in a wide range of real-world applications. Because nodes in sensor networks are powered by batteries, two major problems arise. First, the nodes do not last long because of limited power supply. Second, only limited amount of data can be transferred if proper mobility strategies are not designed. In this research, we propose the concept of pipelining of mobile nodes to asynchronously transfer and relay data in the network. Through a number of simulations we examine the design tradeoff of performance and energy cost. Performance evaluation through simulations has been conducted by number of mobile nodes. The proposed pipelining strategy yields three major benefits. First, as the number of mo...
The popularity of self-balancing vehicles in modern times is rising as the price of consumer electro...
Conventional Underfrequency Load Shedding (UFLS) is used to balance generation and load when underfr...
Cal Poly San Luis Obispo’s PolySat team is designing the Multipurpose Orbital Spring Ejection System...
The Internet of Things (IoT) is reshaping our world. Soon our world will be based on smart technolog...
The purpose of this research is to find out a packet routing algorithm for link error rate aware sat...
In this project, dynamic resource allocation in millimeter wave system that holds the effect of mill...
In this project, dynamic resource allocation in millimeter wave system that holds the effect of mill...
The problem being tackled here relates to the problem of target tracking in wireless sensor networks...
Conventional approaches to asset monitoring involve high-priced sensors paired with a dedicated radi...
Scope and Method of Study:Switch mode power supplies, commonly known as SMPS are basic building bloc...
The objective of this research is to present a low power modem technology for a high speed millimete...
The mobile telecommunication industry is growing at a phenomenal rate. On a daily basis, there are c...
Currently, 20% (1.3 billion) of the world’s population still lacks access to electricity and many li...
All-Optical Networks employing Dense Wavelength Division Multiplexing (DWDM) are believed to be the ...
Abstract. There is not much research concerning network virtualization, even though virtualization h...
The popularity of self-balancing vehicles in modern times is rising as the price of consumer electro...
Conventional Underfrequency Load Shedding (UFLS) is used to balance generation and load when underfr...
Cal Poly San Luis Obispo’s PolySat team is designing the Multipurpose Orbital Spring Ejection System...
The Internet of Things (IoT) is reshaping our world. Soon our world will be based on smart technolog...
The purpose of this research is to find out a packet routing algorithm for link error rate aware sat...
In this project, dynamic resource allocation in millimeter wave system that holds the effect of mill...
In this project, dynamic resource allocation in millimeter wave system that holds the effect of mill...
The problem being tackled here relates to the problem of target tracking in wireless sensor networks...
Conventional approaches to asset monitoring involve high-priced sensors paired with a dedicated radi...
Scope and Method of Study:Switch mode power supplies, commonly known as SMPS are basic building bloc...
The objective of this research is to present a low power modem technology for a high speed millimete...
The mobile telecommunication industry is growing at a phenomenal rate. On a daily basis, there are c...
Currently, 20% (1.3 billion) of the world’s population still lacks access to electricity and many li...
All-Optical Networks employing Dense Wavelength Division Multiplexing (DWDM) are believed to be the ...
Abstract. There is not much research concerning network virtualization, even though virtualization h...
The popularity of self-balancing vehicles in modern times is rising as the price of consumer electro...
Conventional Underfrequency Load Shedding (UFLS) is used to balance generation and load when underfr...
Cal Poly San Luis Obispo’s PolySat team is designing the Multipurpose Orbital Spring Ejection System...