Hardware implementation of an α - level based binary search and shifting fuzzifier (α - BSSF)

Author:

Barrón-Romero César1,Hernández-Zavala Antonio1

Affiliation:

1. Instituto Politécnico Nacional, CICATA-IPN, Querétaro Qro., México

Abstract

Fuzzy processors are used for control actions in nonlinear mechatronic systems where high processing speed is required. The Field Programmable Gate Arrays (FPGA) are a good option to implement low cost fuzzy hardware in a short development time. A very important block in fuzzy hardware is the fuzzifier, since it affects directly in the accuracy of the result and in the processing time for obtaining a fuzzy number. There have been many design methodologies intended for enhancing the performance of this block. This paper presents a parallel fuzzifier circuit called α-BSSF. Its main design characteristics are the use of α-levels for membership representation, usage of integer numbers, and avoiding time-consuming operations. As result, we obtained a fuzzifier that shows advantages in the reduction of the response time and computational resources against the existing sequential fuzzification methods. This proposal is targeted not only for T1FS, but also for T2FS, since the membership calculation through fuzzifier is applied in the same way but twice.

Publisher

IOS Press

Subject

Artificial Intelligence,General Engineering,Statistics and Probability

Reference28 articles.

1. Scalable Architecture for High-Speed Multidimensional Fuzzy Inference Systems;del Campo;Journal of Circuits Systems and Computers,2011

2. Ball J. , Designing Soft-Core Processors for FPGAs, Springer (2007), 229–256.

3. VLSI architecture of fuzzy logic hardware implementation: A review;Murshid;Int J Fuzzy Syst,2011

4. Fuzzy Hardware: A Retrospective and Analysis;Hernandez;IEEE Trans Fuzzy Syst,2012

5. Fuzzy systems, neural networks and neuro-fuzzy systems: A vision on their hardware implementation and platforms over two decades;Bosque;Eng Appl Artif Intell,2014

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