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Genetically engineered microelectronic infrared filters

机译:基因工程微电子红外滤光片

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A genetic algorithm is used for design of infrared filters and in the understanding of the material structure of a resonant tunneling diode. These two components are examples of microdevices and nanodevices that can be numerically simulated using fundamental mathematical and physical models. Because the number of parameters that can be used in the design of one of these devices is large, and because experimental exploration of the design space is unfeasible, reliable software models integrated with global optimization methods are examined. The genetic algorithm and engineering design codes have been implemented on massively parallel computers to exploit their high performance. Design results are presented for the infrared filter showing new and optimized device design.
机译:遗传算法用于红外滤光片的设计以及对共振隧穿二极管材料结构的理解。这两个组件是可以使用基本数学模型和物理模型进行数值模拟的微型设备和纳米设备的示例。由于可以在其中一种设备的设计中使用的参数数量很大,并且由于无法进行设计空间的实验探索,因此将研究与全局优化方法集成的可靠软件模型。遗传算法和工程设计代码已在大型并行计算机上实现,以利用其高性能。给出了红外滤光片的设计结果,显示了新的和优化的设备设计。

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