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Liviu Iftode

Researcher at Rutgers University

Publications -  170
Citations -  8427

Liviu Iftode is an academic researcher from Rutgers University. The author has contributed to research in topics: Mobile computing & Shared memory. The author has an hindex of 51, co-authored 170 publications receiving 8212 citations. Previous affiliations of Liviu Iftode include Princeton University & AT&T.

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Journal ArticleDOI

Improving the performance of reliable transport protocols in mobile computing environments

TL;DR: This work shows how current TCP implementations introduce unacceptably long pauses in communication during cellular handoffs, and proposes an end-to-end fast retransmission scheme that can reduce these pauses to levels more suitable for human interaction.
Journal ArticleDOI

TrafficView: traffic data dissemination using car-to-car communication

TL;DR: The design and implementation of TrafficView is described and the different mechanisms used in the system are described, which helps driving in situations as foggy weather, or finding an optimal route in a trip several miles long.
Proceedings ArticleDOI

Real-time air quality monitoring through mobile sensing in metropolitan areas

TL;DR: A vehicular-based mobile approach for measuring fine-grained air quality in real-time and two cost effective data farming models -- one that can be deployed on public transportation and the second a personal sensing device are proposed.
Proceedings ArticleDOI

Adaptive Traffic Lights Using Car-to-Car Communication

TL;DR: This paper presents an adaptive traffic light system based on wireless communication between vehicles and fixed controller nodes deployed in intersections that can significantly improve traffic fluency in intersections and has clear advantages over other architectures regarding both cost and performance.
Proceedings ArticleDOI

Performance evaluation of two home-based lazy release consistency protocols for shared virtual memory systems

TL;DR: Overlapped Home-based LRC takes advantage of the communication processor found on each node of the Paragon to take advantage of some of the protocol overhead of HLRC from the critical path followed by the compute processor, and it is shown that OHLRC provides modest improvements over HLRC.