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Asymptotically Optimal Policies for Hard-Deadline Scheduling Over Fading Channels

机译:衰落信道上硬截止调度的渐近最优策略

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摘要

A hard-deadline, opportunistic scheduling problem in which $B$ bits must be transmitted within $T$ time slots over a time-varying channel is studied: at the beginning of each slot the transmitter must decide how many bits to serve, or equivalently how much power to transmit with, based on causal channel knowledge where the channel varies from slot to slot (i.e., the channel in the current slot is known, but the channels in future slots are unknown). The objective of the opportunistic scheduling problem is to minimize expected transmission energy. It is assumed that no other packets are concurrently scheduled and that the transmission rate is equal to the capacity of the underlying additive white Gaussian noise channel within each slot, where the channel quality is fixed within a slot but varies in from slot to slot. Thus, the scheduler should be opportunistic, in the sense of transmitting more bits in slot(s) with good channel quality, while also being aware of the deadline so that not too many bits are left to the final slot. No closed-form solution for the optimal policy is known for this problem, which is naturally formulated as a finite-horizon dynamic program, but three different policies are shown to be optimal in the limiting regimes where $T$ is fixed and $B$ is large, $T$ is fixed and $B$ is small, and where $B$ and $T$ are simultaneously taken to infinity. In addition, the advantage of optimal scheduling is quantified relative to a- nonopportunistic (i.e., channel blind) equal-bit policy.
机译:研究了一个严格的机会调度问题,其中必须在时变信道上的$ T $时隙内传输$ B $比特:在每个时隙的开始,发射机必须决定要服务的比特数,或等效地根据因果信道知识,信道在每个时隙之间的变化情况下(即,当前时隙中的信道是已知的,但未来时隙中的信道是未知的),可以发送多少功率。机会调度问题的目的是最小化预期的传输能量。假设没有其他数据包被同时调度,并且传输速率等于每个时隙内的基础加性高斯白噪声信道的容量,其中信道质量在一个时隙内固定,但在每个时隙之间变化。因此,在以良好的信道质量在时隙中传输更多的比特的意义上,调度器应该是机会的,同时也要注意最后期限,以使得没有太多的比特留给最后的时隙。对于此问题,尚无最优策略的闭式解决方案,它自然被公式化为有限水平动态程序,但在限制T $固定且$ B $的限制制度中,三种不同的策略显示为最优。大$ T $是固定的,而$ B $是小的,而$ B $和$ T $同时取无穷大。另外,相对于非机会主义(即,信道盲)等比特策略,量化了最优调度的优点。

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