Ad Hoc Networks Second International Conference, ADHOCNETS 2010, Victoria, BC, Canada, August 18-20, 2010, Revised Selected Papers /
Ad hoc networks, which include a variety of autonomous networks for specific purposes, promise a broad range of civilian, commercial, and military applications. These networks were originally envisioned as collections of autonomous mobile or stationary nodes that dynamically auto-configure themselve...
Συγγραφή απο Οργανισμό/Αρχή: | |
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Άλλοι συγγραφείς: | , , |
Μορφή: | Ηλεκτρονική πηγή Ηλ. βιβλίο |
Γλώσσα: | English |
Έκδοση: |
Berlin, Heidelberg :
Springer Berlin Heidelberg : Imprint: Springer,
2010.
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Σειρά: | Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering,
49 |
Θέματα: | |
Διαθέσιμο Online: | Full Text via HEAL-Link |
Πίνακας περιεχομένων:
- Ad Hoc Network Design I
- Towards Autonomous Vehicular Clouds
- Ad Hoc Networks and Mobile Devices in Emergency Response – A Perfect Match?
- Sensorium – An Active Monitoring System for Neighborhood Relations in Wireless Sensor Networks
- Cashflow: A Channel-Oriented, Credit-Based Virtual Currency System for Establishing Fairness in Ad-Hoc Networks with Selfish Nodes
- Routing
- Location Management in Heterogeneous VANETs: A Mobility Aware Server Selection Method
- Insights into the Routing Stability of a Multi-hop Wireless Testbed
- A Study of Adaptive Gossip Routing in Wireless Mesh Networks
- A Multipath Routing Method with Dynamic ID for Reduction of Routing Load in Ad Hoc Networks
- Ad Hoc Network Design II
- Terminal Design without Using Receiver Circuits for Wireless Sensor Networks
- Cooperative Spectrum Sensing in Ad-Hoc Networks (Invited Paper)
- Receiver Sensitivity in Opportunistic Cooperative Internet of Things (IoT)
- Event Detection in Wireless Sensor Networks – Can Fuzzy Values Be Accurate?
- Medium Access Control
- An Efficient Geo-Routing Aware MAC Protocol for Underwater Acoustic Networks
- A Decentralized Scheduling Algorithm for Time Synchronized Channel Hopping
- DCLA: A Duty-Cycle Learning Algorithm for IEEE 802.15.4 Beacon-Enabled WSNs
- Collision-free Routing Centralized Scheduling Using EbMR-CS Algorithm for IEEE 802.16 Mesh Networks
- Tracking and Routing
- Energy-Efficient Target Tracking in Sensor Networks
- QoS for Wireless Sensor Networks: Service Differentiation at the MAC Sub-Layer
- Mobility and Traffic Adapted Cluster Based Routing for Mobile Nodes (CBR-Mobile) Protocol in Wireless Sensor Networks
- Quantifying the Negative Impact of Mobility and Location Service Inaccuracy on Geo-Routing in Urban Vehicular Environments
- Network Security and Reliability
- Establishing Trust on VANET Safety Messages
- Accelerating Signature-Based Broadcast Authentication for Wireless Sensor Networks
- Secure Data Aggregation in Wireless Sensor Networks: Homomorphism versus Watermarking Approach
- Guaranteeing Reliable Communications in Mesh Beacon-Enabled IEEE802.15.4 WSN for Industrial Monitoring Applications
- Clustering and Node Placement
- A Tree-Based Multiple-Hop Clustering Protocol for Wireless Sensor Networks
- Evaluation of Wireless Body Area Sensor Placement for Mobility Support in Healthcare Monitoring Systems
- Optimal Relay Node Placement and Trajectory Computation in Sensor Networks with Mobile Data Collector
- Balanced Itinerary Planning for Multiple Mobile Agents in Wireless Sensor Networks
- Performance Analysis and Evaluation I
- Analytical Modeling of Address Allocation Protocols in Wireless Ad Hoc Networks
- Analysis of One-Hop Packet Delay in MANETs over IEEE 802.11 DCF
- Performance of Packet-Based Frequency-Hopping Spread Spectrum Radio Control Systems
- Performance Analysis of UWB Body Sensor Networks for Medical Applications
- Performance Analysis and Evaluation II
- A Vehicle-to-Vehicle Communication Protocol for Collaborative Identification of Urban Traffic Conditions
- A Practical Evaluation of ZigBee Sensor Networks for Temperature Measurement
- Minimum Total Node Interference in Wireless Sensor Networks
- Reproducing Consistent Wireless Protocol Performance across Environments.