
The Story
Covering everything from signal processing algorithms to integrated circuit design, this complete guide to digital frontend is invaluable for professional engineers and researchers in the fields of signal processing, wireless communication and circuit design. Showing how theory is translated into practical technology, it covers all the relevant standards and gives readers the ideal design methodology to manage a rapidly increasing range of applications. Stepbystep information for designing practical systems is provided, with a systematic presentation of theory, principles, algorithms, standards and implementation. Design tradeoffs are also included, as are practical implementation examples from realworld systems. A broad range of topics is covered, including digital predistortion (DPD), digital upconversion (DUC), digital downconversion (DDC) and DCoffset calibration. Other important areas discussed are peaktoaverage power ratio (PAPR) reduction, crest factor reduction (CFR), pulseshaping, image rejection, digital mixing, delay/gain/imbalance compensation, error correction, noiseshaping, numerical controlled oscillator (NCO) and various diversity methods.
Description
Covering everything from signal processing algorithms to integrated circuit design, this complete guide to digital frontend is invaluable for professional engineers and researchers in the fields of signal processing, wireless communication and circuit design. Showing how theory is translated into practical technology, it covers all the relevant standards and gives readers the ideal design methodology to manage a rapidly increasing range of applications. Stepbystep information for designing practical systems is provided, with a systematic presentation of theory, principles, algorithms, standards and implementation. Design tradeoffs are also included, as are practical implementation examples from realworld systems. A broad range of topics is covered, including digital predistortion (DPD), digital upconversion (DUC), digital downconversion (DDC) and DCoffset calibration. Other important areas discussed are peaktoaverage power ratio (PAPR) reduction, crest factor reduction (CFR), pulseshaping, image rejection, digital mixing, delay/gain/imbalance compensation, error correction, noiseshaping, numerical controlled oscillator (NCO) and various diversity methods.













