2002Unpublished venueRequires access

Degrees of freedom in adaptive modulation: a unified view

Seong Taek Chung, Andrea Goldsmith

Open publisher page 79 citations

Abstract

We examine adaptive modulation schemes for flat-fading channels where the data rate, transmit power and instantaneous BER are varied to maximize spectral efficiency subject to an average power and BER constraint. Both continuous-rate and discrete-rate adaptation are considered, as well as average and instantaneous BER constraints. We find the general form of power BER, and data rate adaptation that maximizes spectral efficiency for a large class of modulation techniques and fading distributions. The optimal adaptation of these parameters is to increase the power and data rate and decrease the BER as the channel quality improves. Surprisingly, little spectral efficiency is lost when the power or rate is constrained to be constant. Hence, the spectral efficiency of adaptive modulation is relatively insensitive to which degrees of freedom are adapted.

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What this paper is about

We examine adaptive modulation schemes for flat-fading channels where the data rate, transmit power and instantaneous BER are varied to maximize spectral efficiency subject to an average power and BER constraint. Both continuous-rate and discrete-rate adaptation are considered, as well as average and instantaneous BER constraints. We find the general form of power BER, and data rate adaptation that maximizes spectral efficiency for a large class of modulation techniques and fading distributions. The optimal adaptation of these parameters is to increase the power and data rate and decrease the BER as the channel quality improves. Surprisingly, little spectral efficiency is lost when the power or rate is constrained to be constant. Hence, the spectral efficiency of adaptive modulation is relatively insensitive to which degrees of freedom are adapted.

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Available abstract

We examine adaptive modulation schemes for flat-fading channels where the data rate, transmit power and instantaneous BER are varied to maximize spectral efficiency subject to an average power and BER constraint. Both continuous-rate and discrete-rate adaptation are considered, as well as average and instantaneous BER constraints. We find the general form of power BER, and data rate adaptation that maximizes spectral efficiency for a large class of modulation techniques and fading distributions. The optimal adaptation of these parameters is to increase the power and data rate and decrease the BER as the channel quality improves. Surprisingly, little spectral efficiency is lost when the power or rate is constrained to be constant. Hence, the spectral efficiency of adaptive modulation is relatively insensitive to which degrees of freedom are adapted.

Key concepts: Spectral efficiency, Link adaptation, Fading, Modulation (music), Bit error rate, Control theory (sociology), Power (physics), Degrees of freedom (physics and chemistry)

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