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The Fraunhofer MAVO FASPAS for smart system design

机译:Fraunhofer MAVO FASPAS用于智能系统设计

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The Fraunhofer Gesellschaft is the largest organization for applied research in Europe, having a staff of some 12,700, predominantly qualified scientists and engineers, with an annual research budget of over one billion euros. One of its current internal Market-oriented strategic preliminary research (MaVo) projects is FASPAS (Function Consolidated Adaptive Structures Combining Piezo and Software Technologies for Autonomous Systems) which aims to promote adaptive structure technology for commercial exploitation within the current main research fields of the participating FhIs, namely automotive and machine tools engineering. Under the project management of the Fraunhofer-Institute Structural Durability and System Reliability LBF the six Fraunhofer Institutes LBF, IWU, IKTS, ISC, AiS and IIS bring together their competences ranging from material sciences to system reliability, in order to clarify unanswered questions. The predominant goal is to develop and validate methods and tools to establish a closed, modular development chain for the design and realization of such active structures which shall be useful in its width and depth, i.e. for specific R&D achievements such as the actuator development (depth) as well as the complete system design and realization (width). FASPAS focuses on the development of systems and on the following scientific topics: 1.) on design and manufacturing technology for piezo components as integrable actuator/sensor semi-finished modules, 2.) on development and transducer module integration of miniaturized electronics for charge generating sensor systems, 3.) on the development of methods to analyze system reliability of active structures, 4.) on the development of autonomous software structures for flexible, low cost electronics hardware for bulk production and 5.) on the construction and validation of the complete, cost-effective development chain of function consolidated structures through application oriented demonstration structures. The research work will be oriented towards active vibration control for existing components on the basis of highly integrated, both, more or less established and highly innovative piezoelectric actuator and sensor systems in compact, cost-effective and robust design combined with advanced controllers. Within the presentation the project work will be shown using the example of one demonstration structure which is a robust interface, here for being integrated within an automotive spring strut system. The interface is designed as a modular, scalable subsystem. Being such, it can be used for similar scenarios in different technology areas e.g. for active mounting of vibration-inducing aggregates. The interface design allows for controlling uniaxial vibrations (z-direction) as well as tilting (normal to the uniaxial effect) and wobbling (rotating around the z-axis).
机译:Fraunhofer Gesellschaft是欧洲最大的应用研究机构,拥有约12700名员工,主要是合格的科学家和工程师,年度研究预算超过10亿欧元。其当前的内部以市场为导向的战略前期研究(MaVo)项目之一是FASPAS(将压电和自主技术的软件技术相结合的功能综合自适应结构),旨在在参与研究的当前主要研究领域中推广用于商业开发的自适应结构技术FhI,即汽车和机床工程。在弗劳恩霍夫研究所结构耐久性和系统可靠性LBF的项目管理下,六个弗劳恩霍夫研究所LBF,IWU,IKTS,ISC,AiS和IIS汇集了从材料科学到系统可靠性的能力,以阐明未解决的问题。主要目标是开发和验证方法和工具,以建立一个封闭的,模块化的开发链,以设计和实现这种主动结构,这种主动结构的宽度和深度将是有用的,即对于特定的研发成果,例如执行器开发(深度),以及完整的系统设计和实现(宽度)。 FASPAS专注于系统开发和以下科学主题:1.)压电组件作为集成式执行器/传感器半成品的设计和制造技术; 2。)小型电子设备的开发和换能器模块集成,以产生电荷传感器系统; 3。开发用于分析活动结构的系统可靠性的方法,4。)开发用于灵活,低成本的用于批量生产的电子硬件的自主软件结构,以及5.)施工和验证通过面向应用的演示结构,功能合并结构的完整,经济高效的开发链。该研究工作将基于高度集成的,或多或少建立的,高度创新的压电致动器和传感器系统,以紧凑,经济高效且坚固的设计与先进的控制器相结合为基础,对现有组件进行主动振动控制。在演示中,将使用一个演示结构的示例来展示项目工作,该演示结构是一个健壮的界面,在这里可以集成到汽车弹簧支撑系统中。该接口被设计为模块化,可扩展的子系统。这样,它可以用于不同技术领域的类似情况,例如。用于主动安装引起振动的骨料。界面设计允许控制单轴振动(z方向)以及倾斜(垂直于单轴效果)和摆动(绕z轴旋转)。

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