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Api-calculus for intelligent-agent formal modeling and its application in distributed geospatial data conflation.

机译:用于智能代理形式建模的Api演算及其在分布式地理空间数据合并中的应用。

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摘要

Intelligent-agent paradigm is making a wide range of exciting new distributed applications possible. However, beyond the basic engineering and development challenge in design and implementation of agent-based systems, there are several security, validation, verification, and performance related questions that need to be answered. To address these and many other concerns, it is necessary to utilize formal modeling methods useful for representing such systems. Several calculi have been introduced for this purpose. Polyadic pi-calculus, higher order pi-calculus, ambient calculus, and concurrent object-oriented Petri nets are some of the most popular tools for modeling systems consist of agents. However, none of the above calculi covers all the characteristics of intelligent-agent based systems. Intelligence, natural grouping, security, and migration aspects of such systems are not completely covered by any of the above calculi.; Api-calculus is introduced as an extension to pi-calculus. In this calculus we introduce three core concepts: knowledge unit, milieu and term. These concepts give api-calculus the capability to present intelligence in agent-based systems, using knowledge units , as well as natural grouping of agents, using milieus. It also has the potential for security representation, using milieus and terms.; The main motivation for the development of api-calculus was to be employed for modeling an agent-based distributed geospatial data conflation system. This system is a multi-level intelligent-agent based system for evaluation, collection and integration of geospatial data from different data repositories.; The architecture of the agent-based distributed geospatial data conflation system is presented. Next, the syntax and semantics of api-calculus is introduced. Finally, the apicalculus is employed to model the distributed geospatial data conflation system.
机译:智能代理范式正在使各种令人兴奋的新分布式应用成为可能。但是,除了在基于代理的系统的设计和实现方面的基本工程和开发挑战之外,还需要回答一些与安全性,验证,验证和性能相关的问题。为了解决这些以及许多其他问题,有必要利用对表示此类系统有用的形式化建模方法。为此已经引入了几种结石。多元pi演算,高阶pi演算,环境演算和并发的面向对象Petri网是由代理组成的用于建模系统的最流行工具。但是,以上计算都没有涵盖基于智能代理的系统的所有特征。上述任何计算都不能完全涵盖此类系统的情报,自然分组,安全性和迁移方面。引入了api-calculus作为pi-calculus的扩展。在本演算中,我们介绍了三个核心概念:知识单位,环境 。这些概念使api演算能够使用知识单元在基于代理的系统中呈现情报,以及使用 milieus 的代理自然分组。使用 milieus ,它也具有表示安全的潜力。开发api演算的主要动机是用来对基于代理的分布式地理空间数据合并系统进行建模。该系统是基于多层智能代理的系统,用于评估,收集和集成来自不同数据存储库的地理空间数据。提出了基于代理的分布式地理空间数据合并系统的体系结构。接下来,介绍api演算的语法和语义。最后,将顶点用于对分布式地理空间数据合并系统进行建模。

著录项

  • 作者

    Rahimi, Shahram.;

  • 作者单位

    The University of Southern Mississippi.;

  • 授予单位 The University of Southern Mississippi.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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