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Adaptive modulation and power in wireless communication systems with delay constraints

机译:具有延迟约束的无线通信系统中的自适应调制和功率

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This paper considers the problem of adaptive modulation and power in wireless systems with a strict delay constraint. Assuming perfect causal channel state information at the transmitter and the receiver, the modulation and power are dynamically adapted to minimize the outage probability for a fixed data rate. A slow frequency-flat channel is assumed and a discrete-time stationary Markov chain is used to model the time-varying channel. The problem is formulated as a finite-horizon discrete dynamic programming problem. The solution is a set of power/modulation allocation policies to be used during the transmission, as a function of the channel and system state. Numerical results show the gain of such adaptation policies in terms of average outage probability.
机译:本文考虑了具有严格延迟约束的无线系统中的自适应调制和功率问题。假设在发射器和接收器处具有完美的因果信道状态信息,则可以动态调整调制和功率以最小化固定数据速率的中断概率。假定使用慢频率平坦通道,并使用离散时间平稳马尔可夫链对时变通道进行建模。该问题被表述为有限水平离散动态规划问题。解决方案是根据信道和系统状态在传输期间使用的一组功率/调制分配策略。数值结果表明,从平均中断概率的角度来看,这种适应策略的收益。

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