论文标题

梁转向可编程元信息的错误分析

Error Analysis of Programmable Metasurfaces for Beam Steering

论文作者

Taghvaee, Hamidreza, Cabellos-Aparicio, Albert, Georgiou, Julius, Abadal, Sergi

论文摘要

近年来,出现了可编程元信息,用户可以通过软件修改设备的EM响应。在本已强大的EM功能中增加了重新配置,可以为新颖的网络物理系统打开大门,并在诸如全息,隐形或无线通信等领域中具有令人兴奋的应用。然而,这种范式的转变会导致元信息的复杂性不平凡,这将构成新的可靠性挑战,这是由于需要整合调谐,控制和通信资源以实现可编程性而引起的。虽然Metasurfaces将很容易失败,但对它们对错误的容忍度知之甚少。为了弥合这一差距,本文通过提出错误模型和错误分析的一般方法来研究可编程超材料中的可靠性问题。为了得出错误模型,定性地确定和讨论了故障的原因和潜在影响。提出并为梁转向提供了该方法,这构成了可编程跨面的相关案例。结果表明,性能降解取决于误差的类型及其空间分布,在梁转向中,超过20%的错误率仍然可以被认为是可以接受的。

Recent years have seen the emergence of programmable metasurfaces, where the user can modify the EM response of the device via software. Adding reconfigurability to the already powerful EM capabilities of metasurfaces opens the door to novel cyber-physical systems with exciting applications in domains such as holography, cloaking, or wireless communications. This paradigm shift, however, comes with a non-trivial increase of the complexity of the metasurfaces that will pose new reliability challenges stemming from the need to integrate tuning, control, and communication resources to implement the programmability. While metasurfaces will become prone to failures, little is known about their tolerance to errors. To bridge this gap, this paper examines the reliability problem in programmable metamaterials by proposing an error model and a general methodology for error analysis. To derive the error model, the causes and potential impact of faults are identified and discussed qualitatively. The methodology is presented and exemplified for beam steering, which constitutes a relevant case for programmable metasurfaces. Results show that performance degradation depends on the type of error and its spatial distribution and that, in beam steering, error rates over 20% can still be considered acceptable.

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