联合通信雷达的自适应调度:优化数据吞吐量、排队延迟和检测机会之间的权衡

Honghao Ju, Yan Long, X. Fang, Rong He
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引用次数: 3

摘要

在本文中,我们重点研究了一种分时联合CommRadar系统中通信和雷达之间的性能权衡优化问题,这有望实现低复杂度的硬件架构。我们在时间平均数据吞吐量和排队延迟方面确保通信性能。我们从两个方面保证雷达探测机会:1)确保每次探测的探测性能(最大探测距离和速度,速度分辨率),2)长期保持最小的平均时间探测机会。为了实现这一目标,我们探索了通信流量的多样性,设计了一种自适应调度策略。优化CommRadar模式选择,在数据流量小的情况下,利用未占用的传输时间增加雷达探测机会,在数据流量大的情况下,平衡通信和雷达之间的时间分配。我们为自适应调度方法提供了数据吞吐量、排队延迟和检测机会的定量性能界限。通过仿真验证了该方法的有效性。大量的仿真结果表明,我们的方法在集成雷达功能后可以大大降低通信性能损失,同时保证雷达的探测机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Scheduling for Joint CommRadar: Optimizing Tradeoff Among Data Throughput, Queueing Delay, and Detection Opportunities
In this paper, we focus on the performance tradeoff optimization problem between communication and radar in a time-division joint CommRadar system, and this promises a low-complexity hardware architecture. We ensure the communication performance in terms of time averaged data throughput and queueing delay. We guarantee radar detection opportunities in two aspects: 1) ensuring the detection performance (maximum detection range and velocity, velocity resolution) for each detection, and 2) maintaining the minimal time averaged detection chance over long term. To achieve this, we explore the communication traffic diversity to design an adaptive scheduling policy. We optimize the CommRadar mode selection, utilize the un-occupied transmission time for increasing radar detection opportunities when the data traffic is light, and balance the time allocation between communication and radar while the data traffic is heavy. We provide a quantitative performance bound for data throughput, queueing delay, and detection opportunities for our adaptive scheduling method. We verify the performance of our method through simulation. Extensive simulation results demonstrate that our method could greatly reduce the communication performance loss after integrating the radar functionality, while guaranteeing radar detection opportunities.
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