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ad hoc networking
The transmission capacity of Mobile Ad Hoc Networking (MANET) is constrained by the mutual interference of concurrent transmissions between nodes.
      
The service, named Hocman, is a peer-to-peer application with mobile wireless ad hoc networking for PDAs.
      
It will be suitable for radio replacement of wired LANs and for ad hoc networking providing a user data rate of 10-20 Mbit/s.
      
Power consumption is an important issue in the wireless ad hoc networking environment.
      
Challenges in the Verification of Mobile Ad Hoc Networking Systems
      
Research in Mobile Ad Hoc Networking has increased dramatically over the last few years with significant work in hardware architectures, media access and routing protocols.
      
In this paper, we extend the tree multicast concept to wireless, mobile, multihop networks for applications ranging from ad hoc networking to disaster recovery and battlefield.
      
Developments in ad hoc networking also threaten the viability of proxy‐based approaches.
      
With wireless broadband communications and portable devices with appropriate CPU, memory and battery performance, ad hoc connectivity will become more feasible and demand for global connectivity through ad hoc networking is likely to rapidly grow.
      
In dynamic real-time systems such as sensor networks, mobile ad hoc networking and autonomous systems, the mapping between level of service and resource requirements is often not fixed.
      
The GloMo (Global Mobile Information Systems) project1 has focused on developing new wireless ad hoc networking technologies.
      
Ad Hoc networking is a rather old technology that is gaining new momentum in the research community.
      
Prior research in ad hoc networking has generally studied the routing problem in a non-adversarial setting, assuming a trusted environment.
      
Several piconets (WPANs) can be interconnected into a scatternet, which can be considered as an extendable multi-hop ad hoc networking structure.
      
The novel ad hoc networking technologies could provide flexible solutions for the 4G RAN and extend the operator radio coverage.
      
The second direction is "networked robot system", which emerges as a natural extension of mobile ad hoc networking where the networking is closely related to motion control of robots.
      
Virtual private ad hoc networks (VPAN) are secure and self-organizing overlay networks on top of existing IP infrastructure that use ad hoc networking techniques to enable network connectivity.
      
This paper gives an overview of the potential applications, a high-level network architecture and the network challenges emerging from the novel concept of virtual private ad hoc networking.
      
Ad hoc networking applications differ from traditional applications in three fundamental ways.
      
Ad hoc networking is a rapidly emerging area with few established mechanisms, policies and services.
      
 

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