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System-by-design paradigm as applied to the synthesis of innovative field manipulation devices including task-oriented metamaterials

机译:按设计系统范式应用于创新的现场操纵设备的合成,包括面向任务的超材料

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The System-by-Design (SbD) paradigm is adopted in this work in order to synthesize innovative microwave devices comprising task-oriented engineered materials. More in detail, the synthesis problem is formulated in the SbD framework in terms of the combination of a set of elementary functional blocks, each one devoted to the analysis/synthesis of a specific portion of the target device (e.g., the electromagnetic characterization of the material, the simulation of the device comprising the engineered material, the configuration of the material unit cell). The design blocks are then combined in an overall SbD loop to yield an integrated design procedure which is able to fully exploit the degrees of freedom available in the design to satisfy the physical/performance applicative constraints with the minimum costs, andmaximum efficiency and scalability. Representative numerical examples will be reported in the presentation concerning the design of different wave manipulating devices within the proposed SbD approach.
机译:在这项工作中采用了系统设计(SbD)范例,以便合成包括面向任务的工程材料的创新微波设备。更详细地讲,综合问题是在SbD框架中根据一组基本功能块的组合来表述的,每个功能块都专门用于目标设备特定部分的分析/合成(例如,对目标设备的电磁特性进行分析)。材料,包含工程材料的设备的模拟,材料单元的配置)。然后,将设计模块组合到整个SbD环路中,以生成一个集成设计程序,该程序能够充分利用设计中可用的自由度,以最小的成本,最大的效率和可扩展性满足物理/性能应用的约束。演示中将报告代表性的数值示例,这些示例涉及建议的SbD方法中不同波操纵设备的设计。

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