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An improved convergence algorithm to compute ln(x) – FPGA implementations

Bioul, Géry Jean Antoine et al · SEDICI UNLP · 2007

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This paper presents FPGA implementations of classical algorithms for computing ln(x) with some improvement at the level of the multiplication steps, and step skipping techniques. One starts from a practical implementation of ln(x) computation using a convergence method. The function is approximated by a multiplicative normalization technique, however, thanks to the peculiarity of the multiplicative factor, namely (1 + ai .2-i ), with ai ∈ {-1, 0, 1}, the successive multiplications have been replaced by additions. Doing so, one saves the use of LUT’s and eventually reduces processing time, as addition is generally faster than multiplication. Further, the acceleration technique, based on skipping trivial steps, improves performances. Implementations for FPGA are presented with time and slice cost evaluations. The Xilinx Virtex IV has been used for comparative analysis of 8 to 64-bit logarithm computing devices. II Workshop de Arquitecturas, Redes y Sistemas Operativos Red de Universidades con Carreras en Informática (RedUNCI)

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APA 7

Bioul, G. J. A. E. A. (2007). An improved convergence algorithm to compute ln(x) – FPGA implementations. SEDICI UNLP. http://sedici.unlp.edu.ar/handle/10915/21591

MLA

Bioul, Géry Jean Antoine et al. An improved convergence algorithm to compute ln(x) – FPGA implementations. SEDICI UNLP, 2007. http://sedici.unlp.edu.ar/handle/10915/21591.

Chicago

Bioul, Géry Jean Antoine et al. 2007. An improved convergence algorithm to compute ln(x) – FPGA implementations. SEDICI UNLP. http://sedici.unlp.edu.ar/handle/10915/21591.

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Bioul, G. J. A. E. A. 2007, An improved convergence algorithm to compute ln(x) – FPGA implementations, SEDICI UNLP, available at: http://sedici.unlp.edu.ar/handle/10915/21591 [Accessed 8 Aug. 2026].

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Title
An improved convergence algorithm to compute ln(x) – FPGA implementations
Author / contributors
Bioul, Géry Jean Antoine et al
Publisher
SEDICI UNLP
Publication year
2007
Language
English

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