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Mobile ComputingCSE 535 Fall 2012
Georgios VarsamopoulosSchool of Computing, Informatics andDecision Systems EngineeringArizona State University
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Mobile Computing (MC)?
Computing enabled by presence ofwireless enabled portable devices (PDAs,
cell phones etc.)Many other names/overlapping
computing paradigms: Distributed Computing
Pervasive Computing
Ubiquitous Computing
Wireless Computing
Embedded Computing
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Course GoalTo understand what are the fundamentalchallenges in MC and what are some of the
solutions towards solving these fundamentalchallenges
- To learn about the latest and greatest inresearch in MC.
- To familiarize the MC technologies andunderstand their trends.
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Course Goals - Indirect
To enrich you with new ideas
To train you in (mobile) systems orientedthinking
To prepare you for research/profession inmobile computingbut more generallyin adaptive (next-generation) computer
systems
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Course Pre-req
Knowledge of
Computer Networks,Operating Systems
Distributed Computing Conceptsand Algorithms
Some analytical modeling
Willingness to learn!
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Course/Reference Book(s) +
Material1. Fundamentals of Mobile and Pervasive Computing
F. Adelstein, S. K. S. Gupta, G. G. Richard III, and L.
SchwiebertMcGraw Hill. Book WebsiteLink at bottom of http://impact.asu.edu
Reference Books:
Principles of Wireless NetworksPahlavan and Krishnamurty
Mobile Computing- Imielinski and Korth
Protocols and Architecture for Wireless Sensor Networks - Karland Willing
Wireless Sensor NetworksRaghavendra, Znati et al.
Reading Listwill be posted on the class web site.
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TopicsTentative List Mobile and Pervasive Computing Application,
Services and Standards
Mobile Info access and dissemination
Mobility and Location Management
Routing and Middleware
Zigbee, Bluetooth, WiFi, Android and iOS
Wireless Sensor networking, applications and services
Localization
Energy-aware routing Mobile Security and Privacy Mobile computing security
Sensor network security
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Course Mechanics Assignment + Exams + Quizzes: 55% Examstake home: 25% Assignmentwritten (theory) and programming: 20% Quizzeswill be un-announced: 10%
Paper presentation: 10% Term Project: 30% Group Self-defined (with help of instructor) Involves analysis/implementation
Active in-class participation just showing up to class does not count as active
participation.
Extra: 10% Self-directed presentationrelated to this class
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Class FormatLecture (75 min) (usually Mondays)As class progresses the lecture time will
decrease (on average)orOne or Two Paper presentation
(1/2 hr each) Starting soon! (Usually Wednesdays)
5 min. mid-breakif desired
Note: slides of presenters should beprovided to Grader one day inadvance.
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Class Cyberpresence
http://impact.asu.edu/cse535fa12.html Class assignments Slides
Reference material
Announcement
Use Blackboard for submission and otherconfidential material.
Visit regularly for latest information
http://impact.asu.edu/cse535fa10.htmlhttp://impact.asu.edu/cse535fa10.htmlhttp://impact.asu.edu/cse535fa10.htmlhttp://impact.asu.edu/cse535fa10.html7/25/2019 CSE535Fa12-CourseIntro
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What can you expect from thiscourse?
Lots of in-class/ on-line interaction Interesting and challenging assignments and
exam questions Reading technical papersclassical as wellas state-of-art
Technical Writingcritiquing, summarizing Use of LaTeX in writing assignments is required.
Help/Tutorials by instructor/Grader on difficultmaterial And lot more!
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Contacting Me or Grader Instructor
Email: george.varsamopoulos@asu.edu Subject line: CSE535Fa07
Office: BY 514
Phone: 5-2794 Office Hours: M W 3-4pm Call me || come to my office hrs || Set up an appointment http://impact.asu.edu
TA: Priyanka Bagade Email: priyanka.bagade@asu.edu Office BY517BA Office Hours: Monday, Friday 3-4pm
mailto:george.varsamopoulos@asu.eduhttp://impact.asu.edu/http://impact.asu.edu/mailto:george.varsamopoulos@asu.edu7/25/2019 CSE535Fa12-CourseIntro
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Whats Next?Appendix A: Wireless Networking.