1,224,576 research outputs found
Communication-Aware Computing for Edge Processing
We consider a mobile edge computing problem, in which mobile users offload
their computation tasks to computing nodes (e.g., base stations) at the network
edge. The edge nodes compute the requested functions and communicate the
computed results to the users via wireless links. For this problem, we propose
a Universal Coded Edge Computing (UCEC) scheme for linear functions to
simultaneously minimize the load of computation at the edge nodes, and maximize
the physical-layer communication efficiency towards the mobile users. In the
proposed UCEC scheme, edge nodes create coded inputs of the users, from which
they compute coded output results. Then, the edge nodes utilize the computed
coded results to create communication messages that zero-force all the
interference signals over the air at each user. Specifically, the proposed
scheme is universal since the coded computations performed at the edge nodes
are oblivious of the channel states during the communication process from the
edge nodes to the users.Comment: To Appear in ISIT 201
Customizing Data-plane Processing in Edge Routers
While OpenFlow enables the customization of the control plane of a router, currently no solutions are available for the customization of the data plane. This paper presents a prototype that offers to third parties (even end-users) the possibility to install their own applications on the data plane of a router, particularly the ones operating at the edge of the network. This paper presents the motivation of the idea, the reason why we use OpenFlow even if it does not seem appropriate for the data plane, the architecture and the implementation of our prototype, and a first characterization of the system running in our la
Towards Big data processing in IoT: network management for online edge data processing
Heavy data load and wide cover range have always been crucial problems for
internet of things (IoT). However, in mobile-edge computing (MEC) network, the
huge data can be partly processed at the edge. In this paper, a MEC-based big
data analysis network is discussed. The raw data generated by distributed
network terminals are collected and processed by edge servers. The edge servers
split out a large sum of redundant data and transmit extracted information to
the center cloud for further analysis. However, for consideration of limited
edge computation ability, part of the raw data in huge data sources may be
directly transmitted to the cloud. To manage limited resources online, we
propose an algorithm based on Lyapunov optimization to jointly optimize the
policy of edge processor frequency, transmission power and bandwidth
allocation. The algorithm aims at stabilizing data processing delay and saving
energy without knowing probability distributions of data sources. The proposed
network management algorithm may contribute to big data processing in future
IoT
Two Dimensional Edge Detection by Guided Mode Resonant Metasurface
In this letter, a new approach to perform edge detection is presented using
an all-dielectric CMOS-compatible metasurface. The design is based on
guided-mode resonance which provides a high quality factor resonance to make
the edge detection experimentally realizable. The proposed structure that is
easy to fabricate, can be exploited for detection of edges in two dimensions
due to its symmetry. Also, the trade-off between gain and resolution of edge
detection is discussed which can be adjusted by appropriate design parameters.
The proposed edge detector has also the potential to be used in ultrafast
analog computing and image processing
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