调整水下通信链路物理层参数的数据驱动算法

S. Shankar, M. Chitre, Melani Jayasuria
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引用次数: 11

摘要

通信系统的设计与信道性质的假设密切相关。现代通信系统的绝大多数组件都是在软件中实现的,这使我们能够在运行期间微调其参数。调优参数的目标可能是优化数据速率、防止错误、最小化功耗,等等。如果通道的物理特性完全已知,就有可能确定给定目标的这些参数的值。然而在实际操作中,要完全了解信道的状态是相当困难的。这些参数通常相互作用,因此单独调优它们通常是不可能的。我们提出了一种数据驱动的方法,用于调整通信链路的物理层参数以优化数据速率,假设通道在文件传输过程中保持静态。我们的方法不需要任何海峡物理知识。我们说明了我们的方法在水下通信链路的背景下的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data driven algorithms to tune physical layer parameters of an underwater communication link
The design of a communication system is closely linked to assumptions about the nature of the channel. A vast majority of the components of a modern communication system are implemented in software, affording us the ability to fine tune their parameters during operation. The objective for tuning the parameters could be to optimize data rates, protect against errors, minimize power, and so on. If the physics of the channel is completely known, it is possible to determine the values of these parameters for a given objective. However in practice, it is quite difficult to know the state of the channel completely. The parameters usually interact with each other, so tuning them in isolation is often not possible. We present a data driven approach for tuning the physical layer parameters of a communication link to optimize data rates, assuming the channel remains static over the course of a file transfer. Our approach does not need any knowledge of the physics of the channel. We illustrate the application of our approach in the context of an underwater communication link.
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