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Embedded, Everywhere: A Research Agenda for Networked Systems of Embedded Computers (2001)
Computer Science and Telecommunications Board (CSTB)

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. "3. Self-Configuration and Adaptive Coordination." Embedded, Everywhere: A Research Agenda for Networked Systems of Embedded Computers. Washington, DC: The National Academies Press, 2001.

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Embedded, Everywhere: A Research Agenda for Networked Systems of Embedded Computers

developed discipline for centralized systems, and distributed coordination is widely applied outside of embedded applications (for instance, in Internet applications and protocols), but there is much work to be done in the area of distributed adaptive coordination to support embedded applications. Promising directions include techniques for exploiting system redundancies and localized processing and collaborative signal-processing techniques. Such techniques are particularly critical for unattended, resource-constrained systems.

REFERENCES

Abelson, Harold, Don Allen, Daniel Coore, Chris Hanson, George Homsy, Thomas F. Knight, Jr., Radhika Nagpal, Erik Rauch, Gerald Jay Sussman, and Ron Weiss. 2000. “Amorphous computing.” Communications of the ACM 43(5). Also as MIT Artificial Intelligence Memo 1665, August 1999.

Arnold, Ken, and Jim Waldo, eds. 2000. The Jini Specifications, 2nd ed. Cambridge, Mass.: Addison-Wesley.


Corson, M. Scott, and Joe Macker. 1997. Presentation of draft entitled “Mobile Ad Hoc Networks: Routing Protocol Performance Issues and Evaluation Considerations,” IETF. RFC 2501.


Fall, K., and S. Floyd. 1996. “Simulation-based comparisons of Tahoe, Reno, and SACK TCP.” Computer Communication Review 26(3):5-21.

Floyd, S., V. Jacobson, C. Liu, S. McCanne, and L.A. Zhang. 1997. “Reliable multicast framework for light-weight sessions and application level framing.” IEEE/ACM Transactions on Networking 5(6):784-803. An earlier version of this paper appeared in ACM SIGCOMM ’95, August 1995, pp. 342-356.


Gun Sirer, Emin, Robert Grimm, Brian Bershad, Arthur Gregory, and Sean McDirmid. 1998. “Distributed virtual machines: A system architecture for network computing.” Eighth ACM Sigops European Workshop.


Intanagonwiwat, Chalermek, Ramesh Govindan, and Deborah Estrin. 2000. “Directed diffusion: Scalable and robust communication paradigm for sensor networks.” Proceedings of the Sixth Annual International Conference on Mobile Computing and Networks (MobiCOM 2000), Boston, Mass. Available online at <http://lecs.cs.ucla.edu/~estrin/papers/diffusion.ps>.


Jacobson, V. 1988. “Congestion avoidance and control.” ACM SIGCOMM ‘88.


Karp, B., and H.T. Kung. 2000. “GPSR: Greedy perimeter stateless routing for wireless networks.” Proceedings of the Sixth Annual International Conference on Mobile Computing and Networks (MobiCOM 2000).


Mcquillan, J., I. Richier, and E. Rosen. 1980. “The new routing algorithm for the ARPANET,” IEEE Transactions on Communications 28(5):711-719.

Mullender, Sape. 1992. “Kernel support for distributed systems.” Distributed Systems, 2nd ed. S. Mullender, ed. Cambridge, Mass.: Addison-Wesley.


Parsons, David. 1992. The Mobile Radio Propagation Channel. New York: John Wiley & Sons.


Sohrabi, K., and G.J. Pottie. 1999. “Performance of a novel self-organization protocol for wireless ad-hoc sensor networks,” IEEE VTS 50th Vehicular Technology Conference 2:1222-1226.

Sohrabi, Katayoun, Gregory J. Pottie, and Bertha Manriquez. 1998. “Near-ground wideband channel measurement in 800-1000 MHz.” IEEE 1998 Vehicular Technology Conference.


Yu, H., D. Estrin, and R. Govindan. 1999. “A hierarchical proxy architecture for Internet-scale event services.” Proceedings of WETICE’99, June.

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