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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Propagation-Delay-Aware Unslotted Schedules With Variable Packet Duration for Underwater Acoustic Networks
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Propagation-Delay-Aware Unslotted Schedules With Variable Packet Duration for Underwater Acoustic Networks

机译:水下声网络中具有可变数据包持续时间的传播延迟感知无时隙调度

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摘要

Recent advances in scheduling transmissions for underwater acoustic networks utilize and exploit long propagation latency of acoustic waves for achieving throughput gain. These techniques utilize the propagation delay information of the considered network geometry and schedule transmissions in time slots. Time-slotted transmissions are such that most of the interference overlaps with the transmission slots and the receiving slots are interference free. Moreover, exploiting propagation delays lead to multiple transmissions per time slot, thereby resulting in higher throughput. However, the packet duration of each transmission in the time slot is assumed to be fixed. The packet duration, however, provides a degree of freedom that, if utilized, results in strategies that can be adopted to achieve throughput closer to the established upper bound. Therefore, we consider the problem of finding unslotted transmission schedules allowing unequal packet duration. Given the propagation delay between nodes in the network and packet traffic demands, we formulate an optimization problem for minimizing the fractional idle time in a frame (or period) of the schedule as a mixed-integer linear fractional problem (MILFP). We compare our results to the recent advancements that exploit large propagation delays and result in time-slotted and unslotted schedules with fixed packet duration. We also present schedules computed for various network geometries with arbitrary packet traffic demands.
机译:用于水下声网络的调度传输的最新进展利用并利用了声波的长传播潜伏期来实现吞吐量增益。这些技术利用了所考虑的网络几何结构的传播延迟信息,并安排了时隙中的传输。时隙传输使得大多数干扰与传输时隙重叠,并且接收时隙是无干扰的。此外,利用传播延迟导致每个时隙多次传输,从而导致更高的吞吐量。但是,假设时隙中每次传输的分组持续时间是固定的。然而,分组持续时间提供了一定的自由度,如果使用该自由度,则会导致可以采用的策略来实现更接近已建立上限的吞吐量。因此,我们考虑寻找允许不相等分组持续时间的非时隙传输调度的问题。给定网络中节点之间的传播延迟和数据包流量需求,我们制定了一个优化问题,以将调度表的帧(或周期)中的空闲时间最小化,作为混合整数线性分数问题(MILFP)。我们将我们的结果与利用较大传播延迟并导致具有固定数据包持续时间的时隙和无时隙调度的最新进展进行比较。我们还提出了针对具有任意数据包流量需求的各种网络几何计算的计划。

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