在小延迟状态下订购最优的节能传输策略

R. Berry
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引用次数: 4

摘要

在具有随机到达通信量的无线系统中,调度任意时刻传输的数据量是提高能源效率的一项基本技术。本文研究了衰落信道上传输调度的离散时间模型。到达的数据被放入传输缓冲器中,一旦该数据在该缓冲器之后被移除;它通过衰落信道传输。该信道被建模为具有高斯噪声的块衰落信道。对于该模型,在大延迟渐近状态下,平均排队延迟与长期平均功率之间的最优权衡得到了表征。在最优速率下,平均时延随平均时延的增加而减小。这个速率可以通过一个简单的阈值规则对缓冲区占用率执行一系列策略来实现。
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Order optimal energy efficient transmission policies in the small delay regime
In a wireless system with stochastically arriving traffic, scheduling the amount of data transmitted at any time is a basic technique for improving the energy efficiency. A discrete-time model for transmission scheduling over a fading channel is considered in this paper. The arrived data is placed into a transmission buffer, once the data is removed after the buffer; it is transmitted over the fading channel. The channel is modeled as a block-fading channel with Gaussian noise. For this model the optimal trade-off between the average queueing delay and the long-term average power was characterized in the asymptotic regime of large delays. The average power decreases as the average delay increases at the optimal rate. This rate can be achieved by a sequence of policies on the buffer occupancy via a simple threshold rule.
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