Title :
High-frequency reverse-time chaos generation using digital chaotic maps
Author :
Bailey, J.P. ; Beal, A.N. ; Dean, Robert N. ; Hamilton, Michael C. ; Tugnait, Jitendra K.
Author_Institution :
Electr. & Comput. Eng. Dept., Auburn Univ., Auburn, AL, USA
Abstract :
Reverse-time chaos can be used to realise hardware chaotic systems that can operate at speeds equivalent to existing state-of-the-art while requiring significantly less complex circuitry. Unlike traditional chaotic systems, which require significant analogue hardware that is difficult to realise at high speed, the reverse-time system can be realised with a field programmable gate array calculating a digital iterated map. The resulting output forgoes the need for digital-to-analogue conversion by directly driving a series RLC filter. Since the dynamics of this system are determined by an iterated map, precise control of this system is possible by adjusting the map´s initial condition. Hardware results for the controllable reverse-time system demonstrate chaotic behaviour at an operating frequency of 1.8 MHz and show promise for extension to higher frequencies.
Keywords :
RLC circuits; chaos; digital-analogue conversion; field programmable gate arrays; filters; FPGA; digital chaotic maps; digital iterated map; digital-to-analogue conversion; field programmable gate array; frequency 1.8 MHz; high-frequency reverse-time chaos generation; series RLC filter;
Journal_Title :
Electronics Letters
DOI :
10.1049/el.2014.2709