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@article{yu2007design, title={Design of linear phase {FIR} filters in subexpression space using mixed integer linear programming}, author={Yu, Ya Jun and Lim, Yong Ching}, journal={IEEE Transactions on Circuits and Systems I: Regular Papers}, volume={54}, number={10}, pages={2330--2338}, year={2007}, publisher={IEEE} } @article{kodek1980design, |
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title={Design of optimal finite wordlength {FIR} digital filters using integer |
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programming techniques}, author={Kodek, Dusan}, journal={IEEE Transactions on Acoustics, Speech, and Signal Processing}, volume={28}, number={3}, pages={304--308}, year={1980}, publisher={IEEE} } @book{leung2004handbook, title={Handbook of scheduling: algorithms, models, and performance analysis}, author={Leung, Joseph YT}, year={2004}, publisher={CRC Press} } @misc{glpk, title={\url{https://www.gnu.org/software/glpk/}}, |
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note={availble online, accessed May 2018} |
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} @article{rsi, title={Oscillator metrology with software defined radio}, author={Sherman, Jeff A and J{\"o}rdens, Robert}, journal={Review of Scientific Instruments}, volume={87}, number={5}, pages={054711}, year={2016}, publisher={AIP Publishing} } |
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@inproceedings{lim_1996, author={Y.-C. Lim and R. Yang and B. Liu}, booktitle={1996 IEEE International Symposium on Circuits and Systems. Circuits and Systems Connecting the World. ISCAS 96}, title={The design of cascaded FIR filters}, year={1996}, volume={2}, number={}, pages={181-184 vol.2}, keywords={cascade networks;digital filters;FIR filters;filtering theory;linear programming;frequency response;cascaded FIR filters;stopband response;minimum attenuation requirement;passband ripple magnitude;linear-programming technique;FIR filter design;filter optimisation;Finite impulse response filter;IIR filters;Passband;Frequency;Signal sampling;Band pass filters;Digital filters;Attenuation;Image sampling;Linear programming}, doi={10.1109/ISCAS.1996.540382}, ISSN={}, month={May},} @article{lim_1988, author={Y. C. {Lim} and B. {Liu}}, journal={IEEE Transactions on Acoustics, Speech, and Signal Processing}, title={Design of cascade form FIR filters with discrete valued coefficients}, year={1988}, volume={36}, number={11}, pages={1735-1739}, keywords={cascade networks;digital filters;filtering and prediction theory;iterative equalisation strategy;cascade form FIR filters;discrete valued coefficients;peak ripple;prototype filter;roundoff noise property;Finite impulse response filter;Low pass filters;Band pass filters;Passband;Prototypes;Frequency;Digital filters;Digital arithmetic;Design optimization;Sampling methods}, doi={10.1109/29.9010}, ISSN={0096-3518}, month={Nov},} @inproceedings{young_1992, author={C. {Young} and D. L. {Jones}}, booktitle={[Proceedings] ICASSP-92: 1992 IEEE International Conference on Acoustics, Speech, and Signal Processing}, title={Improvement in finite wordlength FIR digital filter design by cascading}, year={1992}, volume={5}, number={}, pages={109-112 vol.5}, keywords={approximation theory;digital filters;integer programming;series (mathematics);finite wordlength filter;quantization;FIR digital filter design;finite impulse response;digital systems;finite wordlength coefficients;cascaded subfilters;stopband suppression;Taylor series approximation;linear integer program;passband deviation;Finite impulse response filter;Digital filters;Linear programming;Passband;Quantization;Frequency response;Digital systems;Taylor series;Minimax techniques;Design optimization}, doi={10.1109/ICASSP.1992.226646}, ISSN={1520-6149}, month={March},} @article{smith_1998, author={L. M. {Smith}}, journal={IEEE Transactions on Signal Processing}, title={Decomposition of FIR digital filters for realization via the cascade connection of subfilters}, year={1998}, volume={46}, number={6}, pages={1681-1684}, keywords={FIR filters;digital filters;cascade networks;Z transforms;transfer functions;frequency response;Newton-Raphson method;convergence of numerical methods;search problems;poles and zeros;FIR digital filters;subfilters cascade connection;even-order linear-phase FIR filters;filter decomposition;fourth-order subfilters;second-order subfilters;roots;z-domain filter transfer function;complex z plane;impulse response symmetry;unit circle;perimeter;complex values;real values;impulse response coefficients;root-finding algorithm;Newton-Raphson method;2D search;Cauchy-Riemann relations;convergence speed;frequency response characteristics;Finite impulse response filter;Digital filters;Polynomials;Programmable logic arrays;Transfer functions;Testing;Frequency response;Application specific integrated circuits;Nonlinear filters;Passband}, doi={10.1109/78.678490}, ISSN={1053-587X}, month={June},} |