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生物启发式优化算法综述,包括在微电子和纳米光子学中的应用

A Comprehensive Review of Bio-Inspired Optimization Algorithms Including Applications in Microelectronics and Nanophotonics.

作者信息

Jakšić Zoran, Devi Swagata, Jakšić Olga, Guha Koushik

机构信息

Center of Microelectronic Technologies, Institute of Chemistry, Technology and Metallurgy, National Institute of the Republic of Serbia University of Belgrade, 11000 Belgrade, Serbia.

Department of Electronics and Communication Engineering, B V Raju Institute of Technology Narasapur, Narasapur 502313, India.

出版信息

Biomimetics (Basel). 2023 Jun 28;8(3):278. doi: 10.3390/biomimetics8030278.

Abstract

The application of artificial intelligence in everyday life is becoming all-pervasive and unavoidable. Within that vast field, a special place belongs to biomimetic/bio-inspired algorithms for multiparameter optimization, which find their use in a large number of areas. Novel methods and advances are being published at an accelerated pace. Because of that, in spite of the fact that there are a lot of surveys and reviews in the field, they quickly become dated. Thus, it is of importance to keep pace with the current developments. In this review, we first consider a possible classification of bio-inspired multiparameter optimization methods because papers dedicated to that area are relatively scarce and often contradictory. We proceed by describing in some detail some more prominent approaches, as well as those most recently published. Finally, we consider the use of biomimetic algorithms in two related wide fields, namely microelectronics (including circuit design optimization) and nanophotonics (including inverse design of structures such as photonic crystals, nanoplasmonic configurations and metamaterials). We attempted to keep this broad survey self-contained so it can be of use not only to scholars in the related fields, but also to all those interested in the latest developments in this attractive area.

摘要

人工智能在日常生活中的应用正变得无处不在且不可避免。在这个广阔的领域中,用于多参数优化的仿生/受生物启发的算法占有特殊地位,它们在众多领域都有应用。新颖的方法和进展正以加速的速度发表。正因如此,尽管该领域有很多综述和评论,但它们很快就过时了。因此,跟上当前的发展至关重要。在这篇综述中,我们首先考虑对受生物启发的多参数优化方法进行可能的分类,因为专门针对该领域的论文相对较少且常常相互矛盾。接着,我们详细描述一些更突出的方法以及那些最近发表的方法。最后,我们考虑仿生算法在两个相关的广泛领域中的应用,即微电子学(包括电路设计优化)和纳米光子学(包括光子晶体、纳米等离子体配置和超材料等结构的逆向设计)。我们试图使这个广泛的综述自成体系,以便它不仅对相关领域的学者有用,而且对所有对这个有吸引力的领域的最新发展感兴趣的人都有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75ef/10807478/6b80a8740f30/biomimetics-08-00278-g001.jpg

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