BibSLEIGH
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Used together with:
energi (8)
imag (4)
sensor (4)
use (4)
method (3)

Stem solar$ (all stems)

20 papers:

DACDAC-2015-ZhangLSLWXY #energy #migration #scheduling
Deadline-aware task scheduling for solar-powered nonvolatile sensor nodes with global energy migration (DZ, YL, XS, JL, TW, CJX, HY), p. 6.
SACSAC-2015-XuYYHHK #multi #predict #using
Solar irradiance forecasting using multi-layer cloud tracking and numerical weather prediction (JX, SY, DY, DH, JH, PK), pp. 2225–2230.
SACSAC-2014-PengYYHKH #3d #detection #multi #using
3D cloud detection and tracking for solar forecast using multiple sky imagers (ZP, SY, DY, DH, PK, JH), pp. 512–517.
CASECASE-2013-LiYY #energy #novel #performance
A novel parabolic trough solar lighting and thermal system for building energy efficiency (TL, FY, CY), pp. 657–662.
DATEDATE-2013-ZhouZY #design #energy #memory management #network #using
The design of sustainable wireless sensor network node using solar energy and phase change memory (PZ, YZ, JY), pp. 869–872.
HCIDUXU-NTE-2013-WaldronS
Calculation of Areas of Permanence in Public Spaces, According to Solar Radiation Simulated Conditions (JAW, JHS), pp. 215–223.
CASECASE-2012-TaboadaXJJ #energy #industrial
Exploring a solar photovoltaic-based energy solution for green manufacturing industry (HAT, ZX, TJ, JAJ), pp. 40–45.
HCIDUXU-v2-2011-BohmSW11a #adaptation #constraints #usability
Customized Usability Engineering for a Solar Control Unit: Adapting Traditional Methods to Domain and Project Constraints (PB, TS, CW), pp. 109–117.
HCIHCD-2011-BohmSW #design #experience #interactive #user interface
Smart Sol — Bringing User Experience to Facility Management: Designing the User Interaction of a Solar Control Unit (PB, TS, CW), pp. 187–196.
HPCAHPCA-2011-LiZCL #architecture #energy #manycore #named #power management
SolarCore: Solar energy driven multi-core architecture power management (CL, WZ, CBC, TL), pp. 205–216.
DATEDATE-2010-AliARA #algorithm #design #energy #evaluation #predict
Evaluation and design exploration of solar harvested-energy prediction algorithm (MIA, BMAH, JR, DA), pp. 142–147.
ICPRICPR-2010-DurakN #classification #detection #image
Principal Contour Extraction and Contour Classification to Detect Coronal Loops from the Solar Images (ND, ON), pp. 2403–2406.
SEKESEKE-2010-PapatellaCZPS #energy #framework
A Framework for Solar Energy Applications Photovoltaic Systems (FP, TFC, LEZ, EMDP, MAJS), pp. 292–297.
DATEDATE-2008-BrunelliBMT #energy #performance
An Efficient Solar Energy Harvester for Wireless Sensor Nodes (DB, LB, CM, LT), pp. 104–109.
DATEDATE-2008-MoserTBB #complexity #robust
Robust and Low Complexity Rate Control for Solar Powered Sensors (CM, LT, DB, LB), pp. 230–235.
ICEISICEIS-v2-2004-ZaratePSSVD #clustering #network #optimisation #representation #set
Optimization of Neural Network’s Training Sets via Clustering: Application in Solar Collector Representation (LEZ, EMDP, DAS, JPDS, RV, ASCD), pp. 147–152.
ICPRICPR-v2-2004-MachadoMC #adaptation #clustering #image #using
The Influence of the Noise in the Restoration of Solar Radio Images using Adaptive Regularization Techniques Based on Clustering (WRSM, NDAM, JERC), pp. 371–374.
ICPRICPR-v4-2004-LeeNG #automation #detection
Automated Detection of Solar Loops by the Oriented Connectivity Method (JKL, TSN, GAG), pp. 315–318.
ICPRICPR-1998-KrejciFS #image #multi
A new multichannel blind deconvolution method and its application to solar images (RK, JF, SS), pp. 1765–1767.
KDDKDD-1997-TurmonMP #identification
Bayesian Inference for Identifying Solar Active Regions (MJT, SM, JP), pp. 267–270.

Bibliography of Software Language Engineering in Generated Hypertext (BibSLEIGH) is created and maintained by Dr. Vadim Zaytsev.
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