Sciweavers
Explore
Publications
Books
Software
Tutorials
Presentations
Lectures Notes
Datasets
Labs
Conferences
Community
Upcoming
Conferences
Top Ranked Papers
Most Viewed Conferences
Conferences by Acronym
Conferences by Subject
Conferences by Year
Tools
Sci2ools
International Keyboard
Graphical Social Symbols
CSS3 Style Generator
OCR
Web Page to Image
Web Page to PDF
Merge PDF
Split PDF
Latex Equation Editor
Extract Images from PDF
Convert JPEG to PS
Convert Latex to Word
Convert Word to PDF
Image Converter
PDF Converter
Community
Sciweavers
About
Terms of Use
Privacy Policy
Cookies
Free Online Productivity Tools
i2Speak
i2Symbol
i2OCR
iTex2Img
iWeb2Print
iWeb2Shot
i2Type
iPdf2Split
iPdf2Merge
i2Bopomofo
i2Arabic
i2Style
i2Image
i2PDF
iLatex2Rtf
Sci2ools
27
click to vote
PERCOM
2004
ACM
favorite
Email
discuss
report
87
views
Computer Networks
»
more
PERCOM 2004
»
Personal Home Server: Enabling Personalized and Seamless Ubiquitous Computing Environments
14 years 10 months ago
Download
dspace.wul.waseda.ac.jp
Tatsuo Nakajima, Ichiro Satoh
Real-time Traffic
PERCOM 2004
|
Seamless Ubiquitous Computing
|
Wireless Networks
|
claim paper
Related Content
»
Personal Network Routing Protocol PNRP for Personal Ubiquitous Environments
»
Gaia enabling active spaces
»
A system for the seamless integration of personal messages using agents developed on a lot...
»
Wearable Key Device for Personalizing Nearby Environment
»
An incentive compatible reputation mechanism for ubiquitous computing environments
»
Enabling Personalized Composition and Adaptive Provisioning of Web Services
»
Experiments and Investigations for the Personal High Performance Computing PHPC built on t...
»
A Mobility Scheme for Personal and Terminal Mobility
»
A Unified Application Service Model for ubiHome by Exploiting Intelligent ContextAwareness
more »
Post Info
More Details (n/a)
Added
24 Dec 2009
Updated
24 Dec 2009
Type
Conference
Year
2004
Where
PERCOM
Authors
Tatsuo Nakajima, Ichiro Satoh
Comments
(0)
Researcher Info
Computer Networks Study Group
Computer Vision