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用于海洋洋流基频识别的整数算术算法。

Integer Arithmetic Algorithm for Fundamental Frequency Identification of Oceanic Currents.

作者信息

Montiel-Caminos Juan, Hernandez-Gonzalez Nieves G, Sosa Javier, Montiel-Nelson Juan A

机构信息

Institute for Applied Microelectronics (IUMA), University of Las Palmas de Gran Canaria, 35015 Las Palmas de Gran Canaria, Spain.

出版信息

Sensors (Basel). 2023 Jul 20;23(14):6549. doi: 10.3390/s23146549.

Abstract

Underwater sensor networks play a crucial role in collecting valuable data to monitor offshore aquaculture infrastructures. The number of deployed devices not only impacts the bandwidth for a highly constrained communication environment, but also the cost of the sensor network. On the other hand, industrial and literature current meters work as raw data loggers, and most of the calculations to determine the fundamental frequencies are performed offline on a desktop computer or in the cloud. Belonging to the edge computing research area, this paper presents an algorithm to extract the fundamental frequencies of water currents in an underwater sensor network deployed in offshore aquaculture infrastructures. The target sensor node is based on a commercial ultra-low-power microcontroller. The proposed fundamental frequency identification algorithm only requires the use of an integer arithmetic unit. Our approach exploits the mathematical properties of the finite impulse response (FIR) filtering in the integer domain. The design and implementation of the presented algorithm are discussed in detail in terms of FIR tuning/coefficient selection, memory usage and variable domain for its mathematical formulation aimed at reducing the computational effort required. The approach is validated using a shallow water current model and real-world raw data from an offshore aquaculture infrastructure. The extracted frequencies have a maximum error below a 4%.

摘要

水下传感器网络在收集有价值的数据以监测近海养殖基础设施方面发挥着关键作用。所部署设备的数量不仅会影响高度受限通信环境的带宽,还会影响传感器网络的成本。另一方面,工业用和文献中使用的电流计用作原始数据记录器,并且大多数用于确定基频的计算是在台式计算机或云端离线进行的。属于边缘计算研究领域,本文提出了一种算法,用于在部署于近海养殖基础设施的水下传感器网络中提取水流的基频。目标传感器节点基于商用超低功耗微控制器。所提出的基频识别算法仅需要使用整数运算单元。我们的方法利用了整数域中有限脉冲响应(FIR)滤波的数学特性。针对旨在减少所需计算量的数学公式,从FIR调谐/系数选择、内存使用和变量域等方面详细讨论了所提出算法的设计与实现。使用浅水流模型和来自近海养殖基础设施的实际原始数据对该方法进行了验证。提取的频率最大误差低于4%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9ba/10383303/fad31269406f/sensors-23-06549-g001.jpg

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