Nancy J. Carter

dblp:170/4789 · DBLP profile ↗
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3ranked-venue papers
0as first author
0since 2021 · last 2019
0000-0002-9500-5554ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 2Systems, architecture and hardware · 1

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer networks
1 paper
Edge and fog computing · 100%
Computer architecture, parallel and distributed computing, and storage systems
2 papers
Cloud and datacenter computing · 66% Storage systems · 34%
Network and information security
1 paper
Systems and software security · 100%
Software engineering, system software, and programming languages
1 paper
Operating systems · 100%

Topics — the 5 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Edge and fog computing
service migration
0.412019
Efficient Live Migration of Edge Services Leveraging Container Layered Storage · IEEE Trans. Mob. Comput. 2019
Cloud and datacenter computing
application migration
0.212015
SMOC: A secure mobile cloud computing platform · INFOCOM 2015
Cloud and datacenter computing
mobile cloud computing
0.212015
SMOC: A secure mobile cloud computing platform · INFOCOM 2015
Storage systems › storage management
container storage
0.112019
Efficient Live Migration of Edge Services Leveraging Container Layered Storage · IEEE Trans. Mob. Comput. 2019
Storage systems › file systems › file system design
stackable file systems
0.112019
Efficient Live Migration of Edge Services Leveraging Container Layered Storage · IEEE Trans. Mob. Comput. 2019

Methods — techniques the papers use, named apart from their topics

lyapunov optimization · 0.8prototype implementation · 0.7hardware virtualization · 0.7
YearPublicationVenuePosition
2019 Efficient Live Migration of Edge Services Leveraging Container Layered Storage
abstract
Mobile users across edge networks require seamless migration of offloading services. Edge computing platforms must smoothly support these service transfers and keep pace with user movements around the network. However, live migration of offloading services in the wide area network poses significant service handoff challenges in the edge computing environment. In this paper, we propose an edge computing platform architecture which supports seamless migration of offloading services while also keeping the moving mobile user “in service” with its nearest edge server. We identify a critical problem in the state-of-the-art tool for Docker container migration. Based on our systematic study of the Docker container storage system, we propose to leverage the layered nature of the storage system to reduce file system synchronization overhead, without dependence on the distributed file system. In contrast to the state-of-the-art service handoff method in the edge environment, our system yields a 80 percent (56 percent) reduction in handoff time under 5 Mbps (20 Mbps) network bandwidth conditions.
Lele Ma, Shanhe Yi, Nancy J. Carter, Qun Li 0001
IEEE Trans. Mob. Comput.3
2017 WearLock: Unlocking Your Phone via Acoustics Using Smartwatch
abstract
Smartphone lock screens are implemented to reduce the risk of data loss or compromise given the fact that increasing amount of person data are accessible on smartphones nowadays. Unfortunately, many smartphone users abandon lock screens due to the inconvenience of unlocking their phones many times a day. With the wide adoption of wearables, token-based approaches have gained popularity in simplifying unlocking and retaining security at the same time. To this end, we propose to take advantage of the smartwatch for easy smartphone unlocking. In this paper, we have designed WearLock, a system that uses acoustic tones as tokens to automate the unlocking securely. We build a sub-channel selection and an adaptive modulation in the acoustic modem to maximize unlocking success rate against ambient noise only when those two devices are nearby. We leverage the motion sensor on the smartwatch to reduce the unlock frequency. We offload smartwatch tasks to the smartphone to speed up computation and save energy. We have implemented the WearLock prototype and conducted extensive evaluations. Results achieved a low average bit error rate (BER) as 8% in various experiments. Compared to traditional manual personal identification numbers (PINs) entry, WearLock achieves at least 18% unlock speedup without any manual effort.
Shanhe Yi, Zhengrui Qin, Nancy J. Carter, Qun Li 0001
ICDCS3
2015 SMOC: A secure mobile cloud computing platform
abstract
Mobile devices are now ubiquitous in the modern world. In this paper, we propose a novel and practical mobile-cloud platform for smart mobile devices. Our platform allows users to run the entire mobile device operating system and arbitrary applications on a cloud-based virtual machine. It has two design fundamentals. First, applications can freely migrate between the user's mobile device and a backend cloud server. We design a file system extension to enable this feature, so users can freely choose to run their applications either in the cloud (for high security guarantees), or on their local mobile device (for better user experience). Second, in order to protect user data on the smart mobile device, we leverage hardware virtualization technology, which isolates the data from the local mobile device operating system. We have implemented a prototype of our platform using off-the-shelf hardware, and performed an extensive evaluation of it. We show that our platform is efficient, practical, and secure.
Zijiang Hao, Yutao Tang, Yifan Zhang 0002, Edmund Novak, Nancy J. Carter, Qun Li 0001
INFOCOM5