Kirjojen hintavertailu – 12 903 724 kirjaa ja 27 kauppaa

Kirjailija

Jiming Chen

Kirjat ja teokset yhdessä paikassa: 4 kirjaa, julkaisuja vuosilta 2012–2024, suosituimpiin kuuluu Optimal Utility-based Congestion Control in Multihop Wireless Networks. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

4 kirjaa

Kirjojen julkaisuvuodet: 2012–2024.

Optimal Utility-based Congestion Control in Multihop Wireless Networks

Optimal Utility-based Congestion Control in Multihop Wireless Networks

Weiqiang Xu; Jiming Chen

Springer International Publishing AG
2024
nidottu
This brief focuses on the state-of-the-art research for congestion control in Multihop Wireless Networks (MWN), based on the Network Utility Maximization (NUM) framework. The brief evaluates fundamental theories, useful performance investigations, and open issues. Multihop Wireless Networks (MWN), including Ad Hoc networks, Wireless sensor networks, and Wireless Mesh networks, play the essential role in the evolution of pervasive computing. MWN represent complex distributed systems which comprise wireless mobile nodes that can freely and dynamically self-organize into arbitrary and temporary network topology, allowing nodes to seamlessly internetwork in areas with no pre-existing communication infrastructure. Optimal Utility-based Congestion Control in Multihop Wireless Networks explores how MWN provide a categorization of applicative scenarios outside of the military domain, such as emergency services, disaster recovery, and environment monitoring.
Rechargeable Sensor Networks: Technology, Theory, And Application - Introducing Energy Harvesting To Sensor Networks
The harvesting of energy from ambient energy sources to power electronic devices has been recognized as a promising solution to the issue of powering the ever-growing number of mobile devices around us. Key technologies in the rapidly growing field of energy harvesting focus on developing solutions to capture ambient energy surrounding the mobile devices and convert it into usable electrical energy for the purpose of recharging said devices. Achieving a sustainable network lifetime via battery-aware designs brings forth a new frontier for energy optimization techniques. These techniques had, in their early stages, resulted in the development of low-power hardware designs. Today, they have evolved into power-aware designs and even battery-aware designs. This book covers recent results in the field of rechargeable sensor networks, including technologies and protocol designs to enable harvesting energy from alternative energy sources such as vibrations, temperature variations, wind, solar, and biochemical energy and passive human power.
Energy-Efficient Area Coverage for Intruder Detection in Sensor Networks

Energy-Efficient Area Coverage for Intruder Detection in Sensor Networks

Shibo He; Jiming Chen; Junkun Li; Youxian Sun

Springer International Publishing AG
2014
nidottu
This Springer Brief presents recent research results on area coverage for intruder detection from an energy-efficient perspective. These results cover a variety of topics, including environmental surveillance and security monitoring. The authors also provide the background and range of applications for area coverage and elaborate on system models such as the formal definition of area coverage and sensing models. Several chapters focus on energy-efficient intruder detection and intruder trapping under the well-known binary sensing model, along with intruder trapping under the probabilistic sensing model. The brief illustrates efficient algorithms rotate the duty of each sensor to prolong the network lifetime and ensure intruder trapping performance. The brief concludes with future directions of the field. Designed for researchers and professionals working with wireless sensor networks, the brief also provides a wide range of applications which are also valuable for advanced-level students interested in efficiency and networking.
Data Dissemination and Query in Mobile Social Networks

Data Dissemination and Query in Mobile Social Networks

Jiming Chen; Jialu Fan; Youxian Sun

Springer-Verlag New York Inc.
2012
nidottu
With the increasing popularization of personal hand-held mobile devices, more people use them to establish network connectivity and to query and share data among themselves in the absence of network infrastructure, creating mobile social networks (MSNet). Since users are only intermittently connected to MSNets, user mobility should be exploited to bridge network partitions and forward data. Currently, data route/forward approaches for such intermittently connected networks are commonly "store-carry-and-forward" schemes, which exploit the physical user movements to carry data around the network and overcome path disconnection. And since the source and destination may be far away from each other, the delay for the destination to receive the data from the source may be long. MSNets can be viewed as one type of socially-aware delay tolerant networks (DTNs). Observed from social networks, the contact frequencies are probably different between two friends and two strangers, and this difference should be taken into consideration when designing data dissemination and query schemes in MSNets. In this book, the fundamental concepts of MSNets are introduced including the background, key features and potential applications of MSNets, while also presenting research topics, such as, MSNets as realistic social contact traces and user mobility models. Because the ultimate goal is to establish networks that allow mobile users to quickly and efficiently access interesting information, particular attention is paid to data dissemination and query schemes in subsequent sections. Combined with geography information, the concepts of community and centrality are employed from a social network perspective to propose several data dissemination and query schemes, and further use real social contact traces to evaluate their performance, demonstrating that such schemes achieve better performance when exploiting more social relationships between users.