* Cantinho Satkeys

Refresh History
  • FELISCUNHA: ghyt74  pessoal   4tj97u<z
    10 de Março de 2026, 11:00
  • j.s.: dgtgtr a todos  49E09B4F 49E09B4F
    09 de Março de 2026, 17:12
  • FELISCUNHA: ghyt74   49E09B4F  e bom fim de semana  4tj97u<z
    07 de Março de 2026, 11:37
  • JPratas: try65hytr Pessoal  4tj97u<z 2dgh8i k7y8j0 yu7gh8
    06 de Março de 2026, 05:31
  • FELISCUNHA: ghyt74  pessoal   49E09B4F
    04 de Março de 2026, 10:47
  • Kool.king1: french
    02 de Março de 2026, 22:47
  • j.s.: dgtgtr a todos  49E09B4F
    01 de Março de 2026, 16:54
  • FELISCUNHA: Votos de um santo domingo para todo o auditório  101041
    01 de Março de 2026, 10:42
  • cereal killa: try65hytr pessoal e bom fim semana de solinho  535reqef34 r4v8p
    28 de Fevereiro de 2026, 20:31
  • FELISCUNHA: ghyt74  Pessoal   4tj97u<z
    27 de Fevereiro de 2026, 10:51
  • JPratas: try65hytr Pessoal  4tj97u<z 2dgh8i k7y8j0 classic
    27 de Fevereiro de 2026, 04:57
  • FELISCUNHA: Votos de um santo domingo para todo o auditório  4tj97u<z
    22 de Fevereiro de 2026, 11:06
  • j.s.: tenham um excelente fim de semana  49E09B4F 49E09B4F
    21 de Fevereiro de 2026, 21:12
  • j.s.: try65hytr a todos  49E09B4F
    21 de Fevereiro de 2026, 21:12
  • Paulo Martins: Sportify
    21 de Fevereiro de 2026, 19:15
  • FELISCUNHA: ghyt74   49E09B4F  e bom fim de semana  4tj97u<z
    21 de Fevereiro de 2026, 11:07
  • JPratas: try65hytr Pessoal 4tj97u<z 2dgh8i k7y8j0 classic
    20 de Fevereiro de 2026, 04:50
  • j.s.: dgtgtr a todos  49E09B4F
    17 de Fevereiro de 2026, 13:55
  • FELISCUNHA: ghyt74   49E09B4F  e bom carnaval
    17 de Fevereiro de 2026, 10:38
  • sacana10: Bom dia a todos
    15 de Fevereiro de 2026, 13:14

Autor Tópico: The Theory of Timed I/O Automata, Second Edition  (Lida 263 vezes)

0 Membros e 1 Visitante estão a ver este tópico.

Online oaxino

  • Moderador Global
  • ***
  • Mensagens: 51280
  • Karma: +0/-0
The Theory of Timed I/O Automata, Second Edition
« em: 13 de Dezembro de 2022, 09:22 »


English | PDF | 2010 | 137 Pages | ISBN : 1608450023 | 0.7 MB


This monograph presents the Timed Input/Output Automaton (TIOA) modeling framework, a basic mathematical framework to support description and analysis of timed (computing) systems. Timed systems are systems in which desirable correctness or performance properties of the system depend on the timing of events, not just on the order of their occurrence. Timed systems are employed in a wide range of domains including communications, embedded systems, real-time operating systems, and automated control. Many applications involving timed systems have strong safety, reliability, and predictability requirements, which make it important to have methods for systematic design of systems and rigorous analysis of timing-dependent behavior. The TIOA framework also supports description and analysis of timed distributed algorithms -- distributed algorithms whose correctness and performance depend on the relative speeds of processors, accuracy of local clocks, or communication delay bounds. Such algorithms arise, for example, in traditional and wireless communications, networks of mobile devices, and shared-memory multiprocessors. The need to prove rigorous theoretical results about timed distributed algorithms makes it important to have a suitable mathematical foundation.
An important feature of the TIOA framework is its support for decomposing timed system descriptions. In particular, the framework includes a notion of external behavior for a timed I/O automaton, which captures its discrete interactions with its environment. The framework also defines what it means for one TIOA to implement another, based on an inclusion relationship between their external behavior sets, and defines notions of simulations, which provide sufficient conditions for demonstrating implementation relationships. The framework includes a composition operation for TIOAs, which respects external behavior, and a notion of receptiveness, which implies that a TIOA does not block the passage of time.
The TIOA framework also defines the notion of a property and what it means for a property to be a safety or a liveness property. It includes results that capture common proof methods for showing that automata satisfy properties.

DOWNLOAD

rapidgator.net:
Citar
https://rapidgator.net/file/798a5a29febc554e2158ace971635158/gttle.The.Theory.of.Timed.IO.Automata.Second.Edition.pdf.html

nitroflare.com:
Citar
https://nitroflare.com/view/FFFF334536D411D/gttle.The.Theory.of.Timed.IO.Automata.Second.Edition.pdf