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计算机支持协同工作及其在并行工程中的应用研究
潘越
1996-06-01
学位类型工学博士
中文摘要计算机支持协同工作(CSCW)致力于研究协同工作的本质和特征,探讨如 何利用各种计算机技术设计出支持协同工作的信息系统,目前已成为多学科交叉 研究的热点。并行工程采用多学科小组协同工作的方式,在各种通讯工具和辅助 设计工具的支持下,全面、并行地考虑产品生命周期中的各种因素以实现没计的 整体最优,因此是CSCW理想的应用领域。尽管这些已引起人们的普遍关注,然 而在协同工作的理论与包括协同工作支持系统在内的协同工作模式 (pattern)的设计实施之间,尚且缺少过渡的、可操作的方法和模型。 本文从协同工作的建模方法、CSCW系统开发和集成方法,以及并行工程中 的分布式概念设计模式三个方面进行了研究,完成的工作主要包括: (1)综述了协同工作理论和建模方法的研究现状,提出建模方法的评价 准则,从而为针对特定协同工作问题选择建模方法提供了依据。 (2)提出了基于代理人的协同工作建模方法。将有限理性的个人及组织 理论应用于协同工作的环境,提出了协同工作代理人(CWA)的基本模型及协同 工作建模语言。 (3)考虑了基于代理人的协同工作建模方法与ISO的开放分布式处理参 考模型(RM—ODP)之间的关系,将协同工作模型转化为需求规范和设计规范, 实现协同工作支持系统同企业分布式处理系统的一体化没计。 (4)运用以上建模方法揭示和分析了除工作流之外的另外两种协同工作 模式,即结果共享和任务共享的协同工作模式。 (5)提出了强调面向用户设计的协同工作支持系统开发的星形生命周期 方法。 (6)提出了基于软件代理人的CSCW系统集成方法和体系结构。 (7)对Yoshikawa(1987)的一般设计理论进行了发展,使之能够描述系统 一子系统关系。 (8)根据一般设计理论和现有的群决策方法,提出了基于设计与或树的 分布式概念设计工作模式。 (9)提出采用评价结果与调度相结合的方法对基于设计与或树的分布式 设计进行方向的控制,考虑具有多种技能的设计人约束,改进了Kusiak&Belhe (1994)的设计调度启发式算法。 (10)在windOWS NT网络上采用Lotus Notes设计实现了一个分布式概 念设计管理系统(DCDMS)原型。
英文摘要Computer supported cooperative work (CSCW) researches on nature and characteristic of cooperative work and methodology of developing computer information system to support it. Recently it became a hot point of cross-disciplinary studies. In concurrent engineering, with the support of various communication and design-aiding tools, members of multi-disciplinary team work together cooperatively, to deal with all elements within the product life circle and to assure the global optimization of design. It is realized that concurrent engineering is an idea field to apply CSCW. High expectation was put on CSCW and concurrent engineering, however, there is a lack of study on intermediate and opearatable methods and models between the theory of cooperative work and development and implementation of cooperative work pattern including its computer support systems. In this dissertation, modeling of cooperative work, development and integration methods of CSCW systems, and a pattern of distributed concept design in concurrent engineering are studied. The main results are listed as follows: (1) A review of theory and modeling approach is given. Some evaluation criteria for modeling approach are established as a basis for choosing particular approacll to particular cooperative work situation. (2) An agent-based modeling approach to cooperative work is presented. The underlying theory is bounded rationality that is applied to cooperative work. The approach is consisted of two parts, i.e., the basic model of cooperative work agent (CWA) and modeling language for cooperative work. (3) The relation between the agent-based modeling approach to cooperative work and ISO reference model of open distributed processing (RM-ODP) is studied. So the cooperative work model can be translated into requirement specification and design specification easily, and CSCW system can be designed compatible with open distributed processing system of the enterprise. (4) Two cooperative work patterns other than workflow pattern are revealed and analyzed with the agent-based modeling approach. (5) A star-shaped life cycle method of user-centered development of CSCW system is put forward. (6) A software-agent-based method and its system architecture for CSCW system is presented. (7) General design theory (Yoshikawa, 1987) is improved so as to deal with the system-subsystem relationship. (8) On the basis of general design theory and recent group decision making techniques, a pattern for distributed concept design is put forward based on and-or design tree. (9) A control heuristic for distributed concept design based on and-or design tree is presented, which combines the evaluation from Delphi techniques and scheduling of design activities. Taken the multi-skill designer constrains into consideration, the design activity schedule algorithm of Kusiak&Belhe (1994) is improved. (10) A prototype
语种中文
文献类型学位论文
条目标识符http://ir.ia.ac.cn/handle/173211/5662
专题毕业生_博士学位论文
推荐引用方式
GB/T 7714
潘越. 计算机支持协同工作及其在并行工程中的应用研究[D]. 中国科学院自动化研究所. 中国科学院自动化研究所,1996.
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