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Sustainable Intralogistics due to Uniform Software and Modular Transport Entities

机译:借助统一的软件和模块化运输实体,实现可持续的内部物流

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The current trend in internal value stream structures shows a clear development towards a combination of the specific advantages of the operation-oriented and the process-oriented production systems. All scientific approaches have in common that flexible intralogistics production networks require an autonomous and intelligent transportation systems that is not designed for a specific task, but can take on different transport roles due to their versatility. However, a comprehensive analysis of current designs and research projects in the field of AGVs and intralogistics transport robots show that there is neither the necessary interoperability of different systems nor a system architecture that addresses a flexible material flow independent of the physical design of the transportation system. AGVs mainly have a central control system, which manages the generation of transport orders and their disposition on the vehicles. In addition, the routes are specified centrally for the vehicles, even if they have free navigation. The individual transport unit is therefore only an executing machine that processes the assigned transport orders without any influence on order dispatching or route planning. Therefore, these AGV approaches do not have the flexibility and autonomy required for an intralogistics production network. The research project addresses the necessary interoperability of logistics systems and the abandonment of proprietary standalone solutions. For this purpose, methods for digitizing the workspace, route planning and path execution using a service-oriented architecture (SOA) were developed. A central component of this architecture is the approach described in the paper to enable decentralized path planning on the vehicles. Therefore, the path planning must be applicable to different target platforms without implementation effort and the vehicle software must be designed independently of the application. This approach allows intralogistics systems to be flexible and adaptable, resulting in a more sustained use of these systems.
机译:内部价值流结构的当前趋势表明,朝着面向操作的生产系统和面向过程的生产系统的特定优势的结合已经有了明显的发展。所有科学方法都有一个共同点,即灵活的内部物流生产网络需要一个自治且智能的运输系统,该系统并非为特定任务而设计,但由于其多功能性而可以承担不同的运输角色。但是,对AGV和内部物流运输机器人领域中当前设计和研究项目的综合分析表明,既没有不同系统之间必要的互操作性,也没有解决与运输系统的物理设计无关的灵活物料流的系统架构。 。 AGV主要具有中央控制系统,该系统管理运输订单的生成及其在车辆上的处理。另外,即使车辆具有自由导航,也将为车辆集中指定路线。因此,单个运输单元只是一台执行机器,该机器可以处理分配的运输订单,而不会影响订单分派或路线计划。因此,这些AGV方法没有内部物流生产网络所需的灵活性和自治性。该研究项目解决了物流系统必需的互操作性,以及放弃专有的独立解决方案。为此,开发了使用面向服务的体系结构(SOA)将工作空间数字化,路由规划和路径执行的方法。该架构的核心部分是本文中描述的方法,以实现车辆上的分散路径规划。因此,路径规划必须适用于不同的目标平台,而无需实施工作,并且车辆软件必须独立于应用程序进行设计。这种方法使内部物流系统具有灵活性和适应性,从而可以更持续地使用这些系统。

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