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Titlebook: Hybrid Systems; Robert L. Grossman,Anil Nerode,Hans Rischel Conference proceedings 1993 Springer-Verlag Berlin Heidelberg 1993 Computer.Hy

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楼主: Gram114
发表于 2025-3-25 05:20:33 | 显示全部楼层
Multiple agent hybrid control architecture,.The two-agent architecture has been shown to be sound and complete. Further research is needed to prove and test a network with more than two agents..The architecture is easily extensible. Additional rules can be easily added to reflected changes in goals or constraints. This feature allows easy an
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Models for hybrid systems: Automata, topologies, controllability, observability,l” is the name we give to control of continuous plants by digital sequential control automata, that is, by control programs implemented on sequential automata. We associate, without using any approximations, sequential automata with continuous plants, and use this to bring sequential control automat
发表于 2025-3-25 14:24:52 | 显示全部楼层
Hybrid system modeling and autonomous control systems,tial in designing sequential supervisory controllers for continuous-state systems, and it is central in designing control systems with high degree of autonomy..After an introduction to intelligent autonomous control and its relation to hybrid control, models for the plant, controller, and interface
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Fault accommodation in feedback control systems,es when faults occur. Despite the importance of the subject, research results from analysis, design, and implementation of fault handling methods have not been widely accepted in the industry. One reason has been scarcity of realistic examples for testing of new methods against industrial systems. A
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On formal support for industrial-scale requirements analysis,mal techniques in the specification and analysis of requirements for hybrid systems. These goals stem from domain-specific concerns such as the division between environment, plant and controller; and from the development context with its wide variety of analysis and design activities..Motivated by s
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R.Ł. Grossman,A. Nerode,A. Ravn,H. Rischelibility, isentropic compressibility, and speed of sound, are required for the development of equations of state of systems. The knowledge of the state behavior combined with thermal properties enables the calculation of non-measurable thermodynamic properties on the basis of classical thermodynamics
发表于 2025-3-26 11:44:40 | 显示全部楼层
Zohar Manna,Amir Pnueliibility, isentropic compressibility, and speed of sound, are required for the development of equations of state of systems. The knowledge of the state behavior combined with thermal properties enables the calculation of non-measurable thermodynamic properties on the basis of classical thermodynamics
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