A Survey on Efficient Rational Sampling Rate Conversion Algorithms
Keywords:
Sampling Rate Conversion, Rational Factor, Finite-impulse-response filter, Linear Phase, Multirate SystemAbstract
In many practical applications of digital signal processing sampling rate conversion is a problem. The process of converting a signal from a given rate to a different rate is called Sampling Rate Conversion. Sampling rate conversion process may be based on an integer or a rational factor. In this paper, the process of rational sampling rate conversion is discussed in detail. Along with this, a complete survey of efficient structures for implementing the sampling-rate conversion by a rational factor of L/M is presented.
References
- Vesa Lehtinen, Djordje Babic and Markku Renfors, “ On impulse Response Symmetry of Farrow Interpolators in Rational Sample Rate Converter”, IEEE Conference on Control, Communication and Signal Processing, pp.693- 696, 2004.
- Robert Bregovic, Yong Chng and Tapio Saramaki,“ Frequency Response Masking Based Design of Two-Channel FIR Filterbanks with Rational Sampling Factors and Reduces Implementation Complexity”, IEEE International Conference on Image and Signal Processing and Analysis, pp. 121-126, 2005.
- Oscar Gutafsson and Hakan Johanson, “ Implementation of polyphase decomposed FIR filters for interpolation and decimation using multiple constant multiplication techniques”, IEEE Asia Pasific Conference on Circuits and Systems, pp. 924-927, 2006.
- Oscar Gutafsson and Hakan Johanson, “Efficient Implementation of FIR Filter Based Rational Sampling Rate Converters Using Constant Matrix Multiplication”, IEEE International Conference on Signals, Systems and Computers, pp. 888-891, 2006.
- Kyung-Ju Cho, Ji-Suk Park and Byeong-Kuk Kim, “Design of a Sample-Rate Converter From CD to DAT Using Fractional Delay All pass Filter”, IEEE Transactions on Circuits and Systems, Vol. 54, No.1, pp. 19-23, January 2007.
- Robert Bregovic, Ya Jun Yu and Ari Viholainen, “Implementation of Linear-Phase FIR Nearly Perfect Reconstruction Cosine-Modulated Filter banks Utilizing the Coefficient Symmetry”, IEEE Transactions on Circuits and Systems, Vol. 57, No. 1, pp. 139-151, January 2010.
- Muhammad ali siddiqui, Nabeel Samad and Shahid Masud, “FPGA based Implementation of Efficient Sample Rate Conversion for Software defined Radios”, IEEE International Conference on computer and Information Technology, pp. 2387-2390, 2010.
- Robert Bregovic, Ya JunYu, Tapio Saramaki, “Implementation of Linear-Phase FIR Filters for a Rational Sampling-Rate Conversion Utilizing the Coefficient Symmetry”, IEEE Transactions on Circuits and Systems, Vol. 58, No. 3, pp. 548-561, March 2011.
- Yu Huijun, “Design Of A Sample-Rate Converter Based On Least-Square Method”, IEEE International Conference on Computer Science and Information Processing, pp. 332-335, June 2012.
- K. R. Nataraj, Dr S. Ramachandran and Dr B. S. Nagabushan, “Design of Architecture for Sampling Rate Converter of demodulator”, IEEE International Conference on Computer and Electrical Engineering, Vol. 2, pp. 427-430, 2009.
- Takahashi N, Takago D,“Efficient multistage Implementation of Rational Sampling Rate Converter”, IEEE International Conference on Circuit Theory and Design, pp. 1-4, September 2013.
- Haipeng Kuang and Dejiang Wang,“An 8- channel, Area efficient, low power Audio Sampling Rate Converter”, IEEE International Conference on Electronic Measurement and Instruments, pp. 262-265, August 2009.
- Raini J,Van Beneden,“Equalizing Sampling Rate converter for Storage Systems”, IEEE International Conference on Acoustics, Speech and signal Processing, Vol. 3, May 2006.
- Toshiba Corp and Kawasaki,“An Area Efficient Sampling Rate Converter Using Negative Feedback”, IEEE International Conference on circuits and systems, pp. 1922-1925, May 2008.
- D. Sinha, A. K. Verma and S. Kumar, "Sample rate conversion technique for software defined radio receiver," 2016 10th International Conference on Intelligent Systems and Control (ISCO), Coimbatore, 2016, pp. 1-7.
Downloads
Published
Issue
Section
License
Copyright (c) IJSRSET

This work is licensed under a Creative Commons Attribution 4.0 International License.