Why a Global Time is Needed in a Dependable SoS

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📝 Original Info

  • Title: Why a Global Time is Needed in a Dependable SoS
  • ArXiv ID: 1404.6772
  • Date: 2014-04-29
  • Authors: Researchers from original ArXiv paper

📝 Abstract

A system-of-systems (SoS) is a large information processing system formed by the integration of autonomous computer systems (called constituent systems, CS), physical machines and humans for the purpose of providing new synergistic services and/or more efficient economic processes. In a number of applications, e.g robotics, the autonomous CSs must coordinate their actions in the temporal domain to realize the desired objectives. In this paper we argue that the introduction of a proper global physical time establishes a shared view about the progress of physical time and helps to realize the temporal coordination of the autonomous CSs. The available global time can also be used to simplify the solution of many challenging problems within the SoS, such as distributed resource allocation, and helps to improve the dependability and fault-tolerance of the SoS.

💡 Deep Analysis

Deep Dive into Why a Global Time is Needed in a Dependable SoS.

A system-of-systems (SoS) is a large information processing system formed by the integration of autonomous computer systems (called constituent systems, CS), physical machines and humans for the purpose of providing new synergistic services and/or more efficient economic processes. In a number of applications, e.g robotics, the autonomous CSs must coordinate their actions in the temporal domain to realize the desired objectives. In this paper we argue that the introduction of a proper global physical time establishes a shared view about the progress of physical time and helps to realize the temporal coordination of the autonomous CSs. The available global time can also be used to simplify the solution of many challenging problems within the SoS, such as distributed resource allocation, and helps to improve the dependability and fault-tolerance of the SoS.

📄 Full Content

A system-of-systems (SoS) is a large information processing system formed by the integration of autonomous computer systems (called constituent systems, CS), physical machines and humans for the purpose of providing new synergistic services and/or more efficient economic processes. In a number of applications, e.g robotics, the autonomous CSs must coordinate their actions in the temporal domain to realize the desired objectives. In this paper we argue that the introduction of a proper global physical time establishes a shared view about the progress of physical time and helps to realize the temporal coordination of the autonomous CSs. The available global time can also be used to simplify the solution of many challenging problems within the SoS, such as distributed resource allocation, and helps to improve the dependability and fault-tolerance of the SoS.

Reference

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