Design of Flexible Production Systems

Design of Flexible Production Systems pdf epub mobi txt 电子书 下载 2026

出版者:
作者:Tolio, Tullio 编
出品人:
页数:299
译者:
出版时间:
价格:$ 123.17
装帧:
isbn号码:9783540854135
丛书系列:
图书标签:
  • production
  • 生产系统
  • 柔性制造系统
  • 工业工程
  • 生产规划
  • 自动化
  • 工业自动化
  • 制造工程
  • 系统设计
  • 优化
  • 供应链管理
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具体描述

In the last decade, the production of mechanical components to be assembled in final products produced in high volumes (e.g. cars, mopeds, industrial vehicles, etc.) has undergone deep changes due to the overall modifications in the way companies compete. Companies must consider competitive factors such as short lead times, tight product tolerances, frequent market changes and cost reduction. Anyway, companies often have to define production objectives as trade-offs among these critical factors since it can be difficult to improve all of them. Even if system flexibility is often considered a fundamental requirement for firms, it is not always a desirable characteristic of a system because it requires relevant investment cost which can jeopardize the profitability of the firm. Dedicated systems are not able to adapt to changes of the product characteristics while flexible systems offer more flexibility than what is needed, thus increasing investment and operative costs. Production contexts characterized by mid to high demand volume of well identified families of products in continuous evolution do not require the highest level of flexibility; therefore, manufacturing system flexibility must be rationalized and it is necessary to find out the best trade-off between productivity and flexibility by designing manufacturing systems endowed with the right level of flexibility required by the production problem. This new class of production systems can be named Focused Flexibility Manufacturing Systems-FFMSs. The flexibility degree in FFMSs is related to their ability to cope with volume, mix and technological changes, and it must take into account both present and future changes. The required level of system flexibility impacts on the architecture of the system and the explicit design of flexibility often leads to hybrid systems, i.e. automated integrated systems in which parts can be processed by both general purpose and dedicated machines. This is a key issue of FFMSs and results from the matching of flexibility and productivity that respectively characterize FMSs and Dedicated Manufacturing Systems (DMSs). The market share of the EU in the machine tool sector is 44%; the introduction of focused flexibility would be particularly important for machine tool builders whose competitive advantage is based on the ability of customizing their systems on the basis of needs of their customers. In fact, even if current production contexts frequently present situations which would fit well with the FFMS approach, tradition and know-how of machine tool builders play a crucial role. Firms often agree with the focused flexibility vision, nevertheless they decide not to pay the risk and efforts related to the design of this new system architecture. This is due also to the lack of well-structured design approaches which can help machine tool builders to configure innovative systems. Therefore, the FFMS topic is studied through the book chapters following a shared mission: "To define methodologies and tools to design production systems with a minimum level of flexibility needed to face, during their lifecycle, the product and process evolution both in the technological and demand aspects. The goal is to find out the optimal trade-off between flexibility and productivity." The book framework follows the architecture which has been developed to address the FFMS Design problem. This architecture is both broad and detailed, since it pays attention to all the relevant levels in a firm hierarchy which are involved in the system design. Moreover, the architecture is innovative because it models both the point of view of the machine tool builder and the point of view of the system user. The architecture starts analyzing Manufacturing Strategy issues and generating the possible demand scenario to be faced. Technological aspects play a key role while solving process plan problems for the products in the part family. Strategic and technological data becomes input when a machine tool builder performs system configuration. The resulting system configurations are possible solutions that a system user considers when planning its system capacity. All the steps of the architecture are deeply studied, developing methods and tools to address each subproblem. Particular attention is paid to the methodologies adopted to face the different subproblems: mathematical programming, stochastic programming, simulation techniques and inverse kinematics have been used. The whole architecture provides a general approach to implement the right degree of flexibility and it allows to study how different aspects and decisions taken in a firm impact on each other. The work presented in the book is innovative because it gives links among different research fields, such as Manufacturing Strategy, Process Plan, System Design, Capacity Planning and Performance Evaluation; moreover, it helps to formalize and rationalize a critical area such as manufacturing system flexibility. The addressed problem is relevant at an academic level but, also, at an industrial level. A great deal of industrial sectors need to address the problem of designing systems with the right degree of flexibility; for instance, automotive, white goods, electrical and electronic goods industries, etc. Attention to industrial issues is confirmed by empirical studies and real case analyses which are presented within the book chapters.

书名: Flexible Production Systems: Design, Planning, and Operation 内容简介 《Flexible Production Systems: Design, Planning, and Operation》是一部全面深入探讨柔性生产系统(FPS)的专著。本书旨在为读者提供理解、设计、规划和运营此类高效、适应性强的生产环境所需的理论基础、技术工具和实践策略。本书内容广泛,涵盖了从FPS的基本概念到高级应用,并结合了最新的行业发展和研究成果,为读者呈现了一幅关于现代制造业前沿技术的全景图。 第一部分:柔性生产系统的基础与理论 本部分旨在为读者建立对柔性生产系统的坚实理解。我们将首先追溯柔性生产系统的发展历程,探讨其出现的背景、驱动因素以及在不同历史阶段的技术演进。接着,我们将深入剖析柔性生产系统的核心特征,包括其在产品种类、生产批量、生产节拍和生产配置方面的灵活性。我们将详细阐述不同类型的柔性生产系统,例如柔性制造系统(FMS)、制造单元(MU)、集群制造以及模块化生产线等,并分析它们各自的适用场景和优势。 在理论层面,我们将重点介绍支撑FPS设计的关键概念。这包括对系统复杂性、不确定性和动态性的分析,以及如何通过系统设计来应对这些挑战。我们将讨论随机性建模、排队论在FPS中的应用,以及如何利用这些工具来预测系统性能和优化资源配置。此外,我们还将深入研究信息流和物料流在FPS中的交互作用,以及如何通过集成化的信息系统来实现高效的生产调度和控制。 第二部分:柔性生产系统的设计原则与方法 本部分将聚焦于FPS的设计过程。我们将首先探讨系统架构设计,包括如何根据产品特性、市场需求和技术能力来选择合适的系统布局,例如U形布局、直线型布局或混合式布局,并分析不同布局对物料搬运、生产流程和空间利用率的影响。我们将详细介绍关键设备的选择和配置,包括数控机床、机器人、AGV(自动导引车)、传送带系统以及仓储系统等,并讨论如何在多种设备选项中做出最优选择。 在软件和控制系统的设计方面,我们将深入探讨制造执行系统(MES)、企业资源计划(ERP)系统与FPS的集成,以及如何利用这些系统来实现生产数据的实时采集、分析和决策支持。我们将详细介绍生产调度算法,包括基于规则的调度、基于优化的调度以及基于人工智能的调度方法,并讨论如何根据不同的生产环境和目标选择合适的调度策略。此外,我们还将关注系统可靠性、可维护性和可扩展性的设计,确保FPS能够长期稳定运行并适应未来的需求变化。 第三部分:柔性生产系统的规划与建模 规划是FPS成功实施的关键环节。本部分将详细阐述FPS的规划流程。我们将首先讨论需求预测与分析,包括如何利用历史数据、市场趋势和客户反馈来准确预测产品需求,以及如何将需求波动纳入生产规划。接着,我们将深入研究生产能力规划,包括如何评估现有产能,如何确定所需的设备数量、人员配置和生产线长度,以及如何平衡产能与市场需求。 在模型构建方面,我们将介绍多种建模技术,以支持FPS的规划和仿真。这包括离散事件仿真,通过模拟系统的动态行为来评估不同设计方案的性能;数学规划模型,例如整数规划和混合整数规划,用于优化资源分配和生产调度;以及基于代理的模型,用于模拟复杂系统中个体组件的行为及其相互作用。我们将详细解释这些模型的构建步骤、输入参数和输出结果,并展示如何利用它们来评估系统性能、识别瓶颈并优化生产计划。 第四部分:柔性生产系统的运营与管理 成功的FPS运营需要精细化的管理。本部分将专注于FPS的日常运营和长期管理。我们将首先讨论生产调度与控制,包括实时调度调整、紧急情况响应以及生产过程的监控与干预。我们将深入研究库存管理策略,包括如何优化在制品库存、成品库存和原材料库存,以降低成本并确保生产顺畅。 在质量管理方面,我们将探讨如何将质量控制融入FPS的设计和运营中,包括在线质量检测、统计过程控制(SPC)的应用以及质量改进的持续性机制。我们还将关注维护管理,包括预防性维护、预测性维护以及故障排除策略,以最大程度地减少设备停机时间。此外,我们还将讨论人员培训与技能提升,以及如何建立跨职能团队以支持FPS的协同运作。 第五部分:柔性生产系统的集成与发展趋势 随着技术的发展,FPS正朝着更集成化、智能化和可视化的方向演进。本部分将探讨FPS的未来发展趋势。我们将深入研究工业物联网(IIoT)在FPS中的应用,包括传感器技术、数据采集与传输,以及如何利用IIoT实现设备的互联互通和数据的实时共享。我们将详细阐述人工智能(AI)和机器学习(ML)在FPS中的应用,例如用于预测性维护、智能调度、质量检测和工艺优化。 此外,我们还将关注数字孪生技术在FPS中的潜力,包括如何构建虚拟的FPS模型来模拟和优化实际系统的运行。我们将探讨人机协作在FPS中的重要性,以及如何设计更安全、高效的人机交互界面。最后,我们将展望绿色制造和可持续生产在FPS中的应用,以及如何通过技术创新和社会责任来构建更具竞争力和可持续性的未来生产体系。 结论 《Flexible Production Systems: Design, Planning, and Operation》提供了一个全面的视角,深入解析了柔性生产系统在当今制造业中的核心地位及其发展潜力。本书的读者群广泛,包括制造工程师、生产经理、系统设计师、技术研究人员以及对现代制造业感兴趣的学者和学生。通过对本书内容的学习,读者将能够掌握设计、规划和运营高效、适应性强的生产系统的关键知识和技能,从而在日益变化的全球市场中保持领先地位。本书旨在成为一本不可或缺的参考指南,为读者在柔性生产系统的实践和研究领域提供坚实的支持。

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