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Adaptive and controllable compliant systems with embedded actuators and sensors

机译:具有嵌入式执行器和传感器的自适应可控兼容系统

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We present a framework for the design of a compliant system; I.e. the concurrent design of a compliant mechanism with embedded actuators and embedded sensors. Our methods simultaneously synthesize optimal structural topology and placement of actuators and sensors for maximum energy efficiency and adaptive performance, while satisfying various weight and performance constraints. The goal of this research is to lay an algorithmic framework for distributed actuation and sensing within a compliant active structure.Key features of the methodology include (1) the simultaneous optimization of the location, orientation, and size of actuators concurrent with the compliant transmission topology and (2) the concepts of controllability and observability that arise from the consideration of control, and their implementation in compliant systems design. The methods used include genetic algorithms, graph searches for connectivity, and multiple load cases implemented with linear finite element analysis. Actuators, modeled as both force generators and structural compliant elements, are included as topology variables in the optimization. Results are provided for several studies, including: (1) concurrent actuator placement and topology design for a compliant amplifier and (2) a shape-morphing aircraft wing demonstration with three controlled output nodes. Central to this method is the concept of structural orthogonality, which refers to the unique system response for each actuator it contains. Finally, the results from the controllability problem are used to motivate and describe the analogous extension to observability for sensing.
机译:我们提出了一个用于设计兼容系统的框架; IE。带有嵌入式执行器和嵌入式传感器的顺应性机构的并行设计。我们的方法同时综合了最佳的结构拓扑以及执行器和传感器的布置,以实现最大的能源效率和自适应性能,同时满足各种重量和性能约束。本研究的目的是为顺应性主动结构内的分布式致动和传感奠定一个算法框架。该方法的主要特征包括(1)与顺应性传输拓扑结构同时优化执行机构的位置,方向和尺寸(2)由于考虑到控制而产生的可控性和可观察性的概念,以及它们在顺应性系统设计中的实现。所使用的方法包括遗传算法,用于连通性的图搜索以及通过线性有限元分析实现的多个工况。在优化中将建模为力生成器和结构顺应性元件的执行器作为拓扑变量包括在内。提供了一些研究结果,其中包括:(1)顺应放大器的同时执行器放置和拓扑设计,以及(2)具有三个受控输出节点的形状变形飞机机翼演示。该方法的核心是结构正交性的概念,它指的是其包含的每个执行器的独特系统响应。最后,可控性问题的结果被用来激励和描述对可观察性的类似扩展。

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