Current Status, Development, And Application of Optimization Methods for Analog Circuits
DOI:
https://doi.org/10.54097/j4vjfn83Keywords:
Analog circuits; Hardware Optimization; Circuit structure optimization.Abstract
The optimization of analog circuits has always relied on the experience and intuition of engineers to find suitable parameters to meet the requirements of the circuit, which is time-consuming and costly. This paper outlines and analyzes the optimization methods for analog circuits in recent years, and draws some summaries that can be used as references for subsequent optimization circuits. The optimization of analog circuits is mainly divided into the optimization of the performance of the hardware in the circuit and the optimization of the circuit structure. Hardware optimization, this paper mainly focuses on the optimization of diodes, transistors, field effect tubes and operational amplifiers, the four main hardware optimizations, from the material, structure, production process and other aspects of the analysis. For the optimization of circuit structure, this paper mainly analyzes from the aspects of algorithms, mathematical models, and the use of integrated methods. The significance of these optimization methods and the outstanding advantages and main application directions of different methods are further explained. The search for optimization methods can reduce the high time cost of analog circuit optimization that is purely dependent on experience and intuition, and is significant in increasing efficiency.
Downloads
References
Hailiang Zhou, Yaqing Chi, Minxuan Zhang, Liang Fang. Optimization of carbon nanotube field effect tube performance based on gradient doping strategy. Acta Physica Sinica, 2010, 59(11).
Jian Tang. Optimization of the performance of ferroelectric doped three-dimensional finned field effect transistors. Xidian University, 2022.
Lei Zhao, Baiheng Zhao, Sheng Chang, Hao Wang, Qijun Huang. Structural optimization of graphene nanoribbon field effect tubes. School of physics and technology, Wuhan University, School of microelectronics and information technology, Wuhan University, 2013.
Chengcheng Xiong. Device structure optimization and design study of tunneling field effect transistors. East China Normal University, 2022.
Yechen Miao. Favorable characteristics of finned field effect transistors and current research directions. Northwestern Polytechnical University, 2021.
Xin Yang. Reliability study of finned field effect transistors at the atomic scale. East China Normal University, 2022.
Heruge Qu, Qiuhui Li, Xingyue Yang, Jin lv. 2D fin field-effect transistors. Science Bulletin, 2023, 68(12).
Yadong Zhang. Device preparation and performance optimization of field effect transistors based on molybdenum disulfide. Hebei University of Technology, 2020.
Peng Wang. Process optimization and preparation of platinum-doped fast recovery diodes. University of Electronic Science and Technology of China, 2021.
Ruxia Zhang. Optimization of the performance of CsPbBr3 chalcogenide light-emitting diodes and modulation of the electron transport layer. Beijing Jiaotong University, 2021.
Ronghong Zheng. Organic-inorganic hybridized chalcogenides for film formation optimization, grain boundary passivation and their application in light-emitting diodes. Soochow University, 2021.
Yao Wang. Structural optimization of group III nitride semiconductor deep-ultraviolet laser diodes. Zhengzhou University, 2022.
Zhiyuan Zhao, Jiangfeng Du, Yong Liu, QI Yu. Optimized design of vertical GaN-based PN diodes with high breakdown voltage composite dielectric structure. State Key Laboratory of Thin Film and Integrated Devices, University of Electronic Science and Technology of China, 2021.
Wenxin Yang, Qilong Wang, Xiaobing Zhang, Ji Xu, Yusheng Zhai, Jian Zhang, Zhiyang Qi. Design and optimization of graphene nanogap tunnelling triodes Design and optimization of graphene nanogap tunnelling triodes. School of Electronic Science and Engineering, Southeast University, 2018.
Xiaoli Tian, Weili Zhu, Jiang Lu, Shuojin Lu, Qiaoqun Yu, Yangjun Zhu. A novel optimization design for 3.3 kV injection-enhanced gate transistor. Journal of Semiconductors, 2014, 35(01).
Jing Wang, Ting Guo, Wei Li. Optimized design of the input stage of a precision low-noise operational amplifier. Semiconductor Technology, 2019, 44(11).
Pin Hu. Improvement of the gray wolf algorithm and its application to operational amplifier design. Xiangtan University, 2019.
Maddileti T, Govindarajulu S, Reddy S C M. Design Optimization of Two Stage Operational Amplifiers using Chaotic Antlion Optimization. 2020 Fourth International Conference on Inventive Systems and Control (ICISC). IEEE, 2020: 514-521.
Nguyen V H, Nguyen D C, Kumar S, et al. Optimum design for the ballistic diode based on graphene field-effect transistors. npj 2D Materials and Applications, 2021, 5(1): 89.
Changcheng Tang, Zuochang Ye. Reinforcement learning based optimization algorithm for parametric circuits. Microelectronics & Computer, 2019, 36(01).
Zongyuan Yu, Chunliu Liao, Zhang Hu, Lunyao Wang. Optimization of Logic Circuits Based on Tree Mux. Journal of Ningbo University (Natural Science & Engineering Edition), 2023,36(05).
Lanwei Zhou, Guoping Chen, Dongyang Sun, Cheng He. Optimization of rotating beam piezoelectric shunt circuit based on simulated annealing algorithm. Journal of Vibration, Measurement & Diagnosis, 2016, 36(02).
Jing Ba. Optimal design of analog integrated circuits based on genetic algorithms. Nanjing University of Posts and Telecommunications, 2017.
Qinglin Meng. Optimized Design of Zynq-based CMOS Sensor Interface Logic Circuit and Research on Image Processing Technology. Nanjing University of Posts and Telecommunications, 2019.
Zhimin Han. Study of optimization process of CMOS operational amplifier design based on gm/ID methodology. North China Electric Power University, 2021.
Xinya Zhang. Study on the optimization model of molecular circuits based on DNA strand substitution. Zhengzhou University of Light Industry, 2023.
Long Zhang. Research on optimization method of electromagnetic forming circuit based on finite element analysis. Electronic Design Engineering, 2020, 28(06).
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Highlights in Science, Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







