DocumentCode :
3079332
Title :
VLSI architectural design of zoomable real time spectrum analyzer
Author :
Sarkar, Santonu ; Dhar, Anindya Sundar
Author_Institution :
IBM India Pvt Lt, Bangalore, India
fYear :
2012
fDate :
7-9 Dec. 2012
Abstract :
Spectrum analyzer is perhaps the most useful instrument that finds its application in almost every branch of engineering. In this work, a pipelined architecture of a hardware economic spectrum analyzer has been presented that incorporates the zooming capability with a nominal increase in the hardware complexity. Sliding window DFT algorithm has been chosen for this purpose and CORDIC (Coordinate Rotation Digital Computer) module has been employed for implementing the architecture. Due to the recursive nature of the algorithm, the error accumulates with number of iterations with time. To prevent accretion of the error beyond the limit of the required accuracy, the proposed architecture operates two parallel pipes simultaneously in a time skewed manner. External control is provided to select the level of zooming. The design is implemented on XILINX Spartan3 FPGA and tested up to two level of zooming for various real-time input signals.
Keywords :
design for testability; digital arithmetic; field programmable gate arrays; integrated circuit design; pipeline processing; signal processing; spectral analysers; CORDIC; VLSI architectural design; XILINX Spartan3 FPGA; coordinate rotation digital computer module; hardware economic spectrum analyzer; pipelined architecture; sliding window DFT algorithm; zoomable real time spectrum analyzer; zooming capability; Algorithm design and analysis; Computer architecture; Computers; Discrete Fourier transforms; Equations; Hardware; Real-time systems; CORDIC; Fourier Transform; VLSI Architecture; Zoomable Spectrum; sliding window;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
India Conference (INDICON), 2012 Annual IEEE
Conference_Location :
Kochi
Print_ISBN :
978-1-4673-2270-6
Type :
conf
DOI :
10.1109/INDCON.2012.6420590
Filename :
6420590
Link To Document :
بازگشت