Farrow structure based FIR filter design using hybrid optimization

被引:3
|
作者
Srivatsan, K. [1 ]
Venkatesan, Nithya [1 ]
机构
[1] VIT, Sch Elect Engn, Chennai 600127, Tamil Nadu, India
关键词
Farrow structure; FIR filter design; Brain Storm Optimization; Artificial Bee Colony; Hybrid optimization; DIFFERENTIAL EVOLUTION; SWARM OPTIMIZATION; DIGITAL-FILTERS; GENETIC ALGORITHM; IMPLEMENTATION;
D O I
10.1016/j.aeue.2019.153020
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Farrow structure is an effective structure for designing the digital filters in order to lease the complexity associated with the design. Keeping in mind, the effective and simple design of the digital filters, a method is proposed based on the Farrow structure. The proposed digital FIR filter is designed based on the farrow structure along with hybrid optimization that is designed using the Brain Storm Optimization (BSO) and Artificial Bee Colony (ABC) algorithm, termed as Brain Storm-Artificial Bee Colony (BSABC) algorithm. The proposed algorithm works based on the minimum objective function that depends on the total number of the hardware components especially adders/subtractors employed for the filter design and frequency response. The proposed algorithm operates in such a way that the quality of the filter is sustained with less number of hardware components. The optimal tuning using the proposed algorithm is simulated and analyzed for highlighting the effective method. The analysis is progressed in terms of the number of components employed in the design, fitness, Mean Absolute Error (MAE), and magnitude. The result of the analysis proves that the proposed method is effective over the Least-Square method with the minimum hardware components of 236 with minimum MAE of 0.02. (C) 2019 Elsevier GmbH. All rights reserved.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Optimization Design Approach for Multiplierless FIR Filter
    Ranjithkumar, S.
    Thilagam, S.
    PROCEEDINGS OF 2016 ONLINE INTERNATIONAL CONFERENCE ON GREEN ENGINEERING AND TECHNOLOGIES (IC-GET), 2016,
  • [22] Satisfactory optimization design of FIR digital filter based on Adaptive Particle Swarm Optimization
    Zhao, Linling
    Zhou, Lifang
    Huang, Wanping
    2007 IEEE INTERNATIONAL CONFERENCE ON CONTROL AND AUTOMATION, VOLS 1-7, 2007, : 2250 - 2254
  • [23] A design approach to a hierarchical structure FIR filter using genetic algorithm
    Saito H.
    Nakamura S.
    IEEJ Transactions on Electronics, Information and Systems, 2010, 130 (05) : 743 - 749+2
  • [24] Design of filter coefficients for optimal factored truncated cascade FIR filter using optimization algorithm
    Srivatsan, K.
    JOURNAL OF HIGH SPEED NETWORKS, 2021, 27 (04) : 403 - 420
  • [25] Design of two-dimensional FIR filter using hybrid domain approximation
    Zhu, Jiemei
    Hamada, Nozomu
    Electronics and Communications in Japan, Part III: Fundamental Electronic Science (English translation of Denshi Tsushin Gakkai Ronbunshi), 1994, 77 (12): : 71 - 81
  • [26] A proficient design of hybrid synchronous and asynchronous digital FIR filter using FPGA
    Paulchamybalaiah
    Vennila, Ila
    International Journal of Computer Science Issues, 2012, 9 (4 4-1): : 395 - 404
  • [27] DESIGN OF 2-DIMENSIONAL FIR FILTER USING HYBRID DOMAIN APPROXIMATION
    ZHU, JM
    HAMADA, N
    ELECTRONICS AND COMMUNICATIONS IN JAPAN PART III-FUNDAMENTAL ELECTRONIC SCIENCE, 1994, 77 (12): : 71 - 81
  • [28] FIR Filter Design Based On FPGA
    Zheng Jiayu
    Wei Zhenhua
    2018 10TH INTERNATIONAL CONFERENCE ON MEASURING TECHNOLOGY AND MECHATRONICS AUTOMATION (ICMTMA), 2018, : 36 - 40
  • [29] Optimization of High Speed Pipelining in FPGA-based FIR Filter Design using Genetic Algorithm
    Meyer-Baese, Uwe
    Botella, Guillermo
    Romero, David E. T.
    Kumm, Martin
    INDEPENDENT COMPONENT ANALYSES, COMPRESSIVE SAMPLING, WAVELETS, NEURAL NET, BIOSYSTEMS, AND NANOENGINEERING X, 2012, 8401
  • [30] 2-Dimensional FIR Digital Filter Design using Teaching-Learning-Based Optimization
    Kwan, Hon Keung
    Zhang, Miao
    2018 IEEE 61ST INTERNATIONAL MIDWEST SYMPOSIUM ON CIRCUITS AND SYSTEMS (MWSCAS), 2018, : 684 - 687