By Tariq Samad, Gary Balas
Discusses open structures, item orientation, software program brokers, domain-specific languages, part architectures, in addition to the dramatic IT-enabled advancements in reminiscence, conversation, and processing assets which are now on hand for stylish keep an eye on algorithms to exploit.Useful for practitioners and researchers within the fields of real-time structures, aerospace engineering, embedded structures, and synthetic intelligence.
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Additional resources for Software-Enabled Control: Information Technology for Dynamical Systems
Software Enabled Control ŽSEC. research program.
M. W. Kennedy, Major, USAF, A Moderate Course for USAF UAV Development, Research Report, Air Command and Staff College, Air University, April 1998. htm. 6. D. :42, September 1997. 7. Statement of Louis J. Rodrigues, Director, Defense Acquisitions Issues, National Security and International Affairs Division to Congressional House Subcommittees on Military Research and Development and Military Procurement, April 1997. htm. 8. Statement of Dr. Paul Kaminski, Undersecretary of Defense for Acquisition and Technology before the Armed Services Subcommittee on Acquisition and Technology of the Senate Committee on Armed Services, 20 March 1996.
Another aspect of the complexity of real-time control systems is addressed in Chapter 7, authored by Lee and colleagues at the University of California, Berkeley. Lee et al. introduce a componentized, system-level design architecture, Ptolemy II, that has been designed for applications consisting of a variety of models of computation. The authors argue that managing this variety is the key question to be answered when designing complex control software. Ptolemy II represents a structured approach to heterogeneity management by providing an environment within which hierarchies of components can be constructed.