Scientific and Methodological Approaches to Determining the Conditions for the Emergence of Synergetic Processes in the Life Cycle of Intelligent Integrated Management Systems

S. Kozlov
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Abstract

Based on the integrated application of functional and process approaches to organization life cycle, integrated management systems, taking into account the need to overcome limitations of the systemic approach in the creation and use of systems such as hi-tech projects development, provides scientific-methodological recommendations on organization of rational use of system functionality. Intellectualization of integrated management systems using robotic systems and complexes is presented comprehensively at the level of organizational, organizational and resource (taking into account their decomposition into organizational-information, organizational-cognitive, organizational-technical) and technical-technological processes. The main features of target processes in the life cycle of an integrated control system when including functional systems based on robotic systems and complexes in its composition are given. The complete group of target processes is considered. This approach is universal and is proposed to describe the structure of counteracting processes that have an artificial origin. In the lifecycle of integrated systems. The main content of developers' work on providing target processes at the stages of the integrated management system life cycle is considered: research, development, testing and operation of integrated management systems. It is shown that organizational and resource processes are the most flexible and capable of prompt adjustment at the operational stage. The article considers the development trend of integrated management systems as network-centric systems that allow for the reallocation of resources for the implementation of the main functions of the system. On a process basis, in accordance with the system triad, which includes the principles of openness, non-linearity and coherence, the conditions for implementing synergetic properties are considered. For this purpose, conditions should be created for the emergence of synergetic processes within the full group of processes aimed at implementing functionality. To create such conditions should be identified and promptly addressed vulnerability at the interface of the target process, to timely and qualitatively addressed the negative conditions for the implementation of opposing processes of external and internal origin, a rational way to be the formation and implementation of institutional, organizational, resource and technical-technological processes in the composition of their complete group. It is shown that such conditions should be planned and provided at the early stages of the integrated systems life cycle during research to determine the main organizational, technical, system and technological solutions. Organizational and resource processes can be quickly adjusted during operation. Technical and technological processes provided for at the stage of development of the control system do not have wide opportunities for their correction.
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确定智能集成管理系统生命周期中协同过程出现的条件的科学和方法方法
基于对组织生命周期的功能和过程方法的集成应用,集成管理系统考虑到需要克服系统方法在创建和使用系统(如高科技项目开发)中的局限性,提供了关于合理使用系统功能的组织的科学方法建议。使用机器人系统和综合体的综合管理系统的智能化在组织、组织和资源(考虑到它们分解为组织-信息、组织-认知、组织-技术)和技术-技术过程的层面上全面呈现。给出了包含基于机器人系统和综合体的功能系统的集成控制系统生命周期中目标过程的主要特征。考虑完整的目标过程组。这种方法是通用的,并被提议用来描述具有人工起源的抵消过程的结构。在集成系统的生命周期中。开发人员在集成管理体系生命周期各阶段提供目标过程的主要工作内容是:集成管理体系的研究、开发、测试和运行。结果表明,组织和资源过程是最灵活的,能够在业务阶段迅速进行调整。本文认为综合管理系统的发展趋势是以网络为中心的系统,允许资源的重新分配,以实现系统的主要功能。在过程的基础上,根据系统三元,其中包括开放性,非线性和相干性的原则,考虑实现协同性能的条件。为此目的,应创造条件,以便在旨在实现功能的整个过程组中出现协同过程。要创造这样的条件,应查明和迅速处理易受伤害的目标进程的界面,及时和定性地处理不利的条件,以执行外部和内部根源对立的进程,形成和执行体制、组织、资源和技术-技术进程在其组成上的完整群体的合理途径。研究表明,应在集成系统生命周期的早期阶段规划和提供这些条件,以确定主要的组织、技术、系统和技术解决方案。组织和资源流程可以在操作过程中快速调整。在控制系统发展阶段规定的技术和工艺过程没有广泛的机会加以纠正。
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