Title :
Adaptive modulation system with discrete power control and predistortion-type nonlinear compensation for high spectral efficient and high power efficient wireless communication systems
Author :
Arimochi, Koji ; Sampei, Seiichi ; Morinaga, Norihiko
Author_Institution :
Daihen Corp., Osaka, Japan
Abstract :
This paper proposes an adaptive modulation system (AMS) with a discrete power control combined with a predistortion (PD)-type nonlinear distortion compensation technique for high quality and high power efficient high-bit-rate wireless communication systems. In the PD-type nonlinear distortion compensator, predistortion look-up table is updated using a teaching signal embedded in the guard time. In this process, nonlinear input signal vs. output distortion performance is discretely measured during the guard time period, and at the end of the guard time, a sequence of the measured distortion is interpolated using a cubic spline function to reduce memory size and the number of computation. More over, in the power control section, three levels of transmitter power attenuation, i.e., 0, 10 and 20 dB are prepared, and they are selected according to the expected carrier power to noise power spectral density (C/N0) of the transmitter. Computer simulation confirms that the proposed method can sufficiently suppress the non-linear distortion in the adaptive modulation TDMA/TDD systems
Keywords :
interpolation; multimedia communication; noise; personal communication networks; power control; quadrature amplitude modulation; radio transmitters; spectral analysis; splines (mathematics); telecommunication control; time division multiple access; TDMA/TDD systems; adaptive modulation system; carrier power to noise power spectral density; computer simulation; cubic spline function; discrete power control; guard time period; high power efficient systems; high spectral efficient systems; high-bit-rate systems; interpolation; measured distortion; memory size reduction; multilevel QAM; nonlinear distortion suppression; nonlinear input signal; output distortion performance; predistortion look-up table; predistortion-type nonlinear compensation; teaching signal; transmitter power attenuation; wireless communication systems; wireless personal multimedia communication systems; Adaptive control; Adaptive systems; Distortion measurement; Nonlinear distortion; Power control; Predistortion; Programmable control; Size measurement; Time measurement; Transmitters;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 1997. Waves of the Year 2000. PIMRC '97., The 8th IEEE International Symposium on
Conference_Location :
Helsinki
Print_ISBN :
0-7803-3871-5
DOI :
10.1109/PIMRC.1997.631045