Open Access Open Access  Restricted Access Subscription Access

Voltage-mode Fuzzy Logic Controller


Affiliations
1 Universiti Sains Malaysia (USM), School of Electrical & Electronic Engineering Engineering Campus 14300, Nibong Tebal, Pulau Pinang, Malaysia
 

A voltage-mode fuzzy logic controller on the base of controlling transistor net is introduced in this paper. The inputs and output of total system are digital voltage pulses while inside parts of total circuits are analog voltage mode circuits. Using transistor net in fuzzifier part provides a simple method for implementing a fast and accurate fuzzifying operation. The chip area of resulted controller is 0.22 mm2 in 0.35um CMOS technology and the inference speed is 14.83 MFLIPS.

Keywords

FLC, Chip Designing, Fuzzifier, Voltage Mode, Min Circuit
User

  • Jeen-Shing Wang, Lee C S G, (2002) “Self-adaptive neuro-fuzzy inference systems for classification applications” IEEE Transactions on Fuzzy Systems, Vol. 10, pp.790 - 802
  • Lin , F.G, Lin, C.H. and shen,P.H. (2001). Self-constructing fuzzy neural network speed controller for permanent-magnet synchronous motor drive. IEEE transactions on fuzzy systems, Vol. 9, No. 5, pp.751-759.
  • Min-Yuan Cheng, Hsing-Chih Tsai, Erick Sudjono, (2010) “Evolutionary fuzzy hybrid neural network for project cash flow control” Engineering Applications of Artificial Intelligence, Vol. 23, No. 4, pp.604-613.
  • Mohagheghi, Venayagamoorthy S, G K and Harley R G (2006) “Adaptive Critic Design Based Neuro-Fuzzy Controller for a Static Compensator in a Multimachine Power System” IEEE Transactions on Power Systems, Vol. 21, pp.1744 - 1754 .
  • Rong-Jong Wai, (2002) “Hybrid fuzzy neural-network control for nonlinear motor-toggle servomechanism”IEEE Transactions on Control Systems Technology, IEEE Transactions on Vol. 10, pp.519 – 532.
  • Sadeq Aminifar (2010) “Fuzzy Logic Controller as a Digital Chip Using New Strategy” Research Project of Mahabad Branch, Islamic Azad University, 2010.
  • Sadeq Aminifar (2011) “A Novel Defuzzifier as a Result of Designing of a Fuzzy Logic Controller as a Digital Chip Using New Strategy” in Journal of Basic and Applied Scientific Research, Vol. 1, No.11, pp. 2495-2499.
  • Sadeq Aminifar, Khoei A, Hadid Kh, Yosefi Gh, (2006), “A digital CMOS fuzzy logic controller chip using new fuzzifier and max circuit” Int. J. Electron. Commun. (AE) Vol. 60, pp.557 – 566.
  • Sanchez-Sinenico E, and Andreou A G, (1999) “Low-Voltage/low-power Integrated circuits and systems” IEEE.
  • Guo S, Peters L, and Surmann H, (1998) “Design and implementation of an Analog Fuzzy Logic Controller,” IEEE Trans. on Fuzzy Systems, Vol. 4, No. 4.

Abstract Views: 422

PDF Views: 101




  • Voltage-mode Fuzzy Logic Controller

Abstract Views: 422  |  PDF Views: 101

Authors

Sadegh Aminifar
Universiti Sains Malaysia (USM), School of Electrical & Electronic Engineering Engineering Campus 14300, Nibong Tebal, Pulau Pinang, Malaysia
Arjuna Bin Marzuki
Universiti Sains Malaysia (USM), School of Electrical & Electronic Engineering Engineering Campus 14300, Nibong Tebal, Pulau Pinang, Malaysia

Abstract


A voltage-mode fuzzy logic controller on the base of controlling transistor net is introduced in this paper. The inputs and output of total system are digital voltage pulses while inside parts of total circuits are analog voltage mode circuits. Using transistor net in fuzzifier part provides a simple method for implementing a fast and accurate fuzzifying operation. The chip area of resulted controller is 0.22 mm2 in 0.35um CMOS technology and the inference speed is 14.83 MFLIPS.

Keywords


FLC, Chip Designing, Fuzzifier, Voltage Mode, Min Circuit

References





DOI: https://doi.org/10.17485/ijst%2F2012%2Fv5i11%2F30652