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相关概念视频

The Y-to-Y Circuit01:19

The Y-to-Y Circuit

425
In a balanced four-wire wye-to-wye system, the arrangement involves wye-connected sinusoidal voltage sources and loads, connected through a neutral wire that links the neutral nodes of the source and load. The load impedance is connected across each phase of the load. The wye-connected source can be connected to the wye-connected load in four-wire and three-wire arrangements. A three-phase system is considered balanced when the load on each phase is equal, leading to uniform current flow and...
425
The Y-to-Delta Circuit01:19

The Y-to-Delta Circuit

429
A balanced wye-to-delta circuit comprises balanced Y-connected voltage sources and delta-connected loads with no neutral line connection.
The initial step in analyzing a wye-to-delta circuit is to assume a positive phase sequence. These phase voltages are then utilized to calculate the line voltages that occur directly across the delta-connected load impedances. Van, Vbn, and Vcn are the phase voltages in wye, and Vab, Vbc, and Vca are the line voltages for a delta circuit. The relation between...
429
Signal Flow Graphs01:18

Signal Flow Graphs

232
Signal-flow graphs offer a streamlined and intuitive approach to representing control systems, providing an alternative to traditional block diagrams. These graphs use branches to symbolize systems and nodes to represent signals, effectively illustrating the relationships and interactions within the system.
In a signal-flow graph, branches denote the system's transfer functions, while nodes represent the signals. The direction of signal flow is indicated by arrows, with the corresponding...
232
Classification of Signals01:30

Classification of Signals

476
In signal processing, signals are classified based on various characteristics: continuous-time versus discrete-time, periodic versus aperiodic, analog versus digital, and causal versus noncausal. Each category highlights distinct properties crucial for understanding and manipulating signals.
A continuous-time signal holds a value at every instant in time, representing information seamlessly. In contrast, a discrete-time signal holds values only at specific moments, often denoted as x(n), where...
476
Even and Odd Signals01:17

Even and Odd Signals

863
An even signal, whether in continuous-time or discrete-time, is defined by its symmetry with its time-reversed version. Mathematically, this is represented as
863
Receiver Operating Characteristic Plot01:15

Receiver Operating Characteristic Plot

229
A ROC (Receiver Operating Characteristic) plot is a graphical tool used to assess the performance of a binary classification model by illustrating the trade-off between sensitivity (true positive rate) and specificity (false positive rate). By plotting sensitivity against 1 - specificity across various threshold settings, the ROC curve shows how well the model distinguishes between classes, with a curve closer to the top-left corner indicating a more accurate model. The area under the ROC curve...
229

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YFDM:用于检测莫尔斯码的YOLO.

Zhenhua Wei1, Zijun Li2, Siming Han1

  • 1Academy of Operational Support Rocket Force Engineering University, Xi'an, 710025, China.

Scientific reports
|November 23, 2023
PubMed
概括
此摘要是机器生成的。

本研究介绍了YFDM,一个高效的摩尔斯码检测算法. 与YOLOv5相比,它显著降低了模型大小和计算负载,同时保持了复杂通信环境的高精度和速度.

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科学领域:

  • 信号处理 信号处理
  • 机器学习 机器学习
  • 人工智能的人工智能

背景情况:

  • 手动的莫尔斯码检测与复杂的短波通信环境作斗争.
  • 现有的方法缺乏现代应用所需的效率和准确性.

研究的目的:

  • 为了提高效率和准确性,开发一个自动化的摩尔斯代码检测算法 (YFDM).
  • 改进现有的对象检测模型,用于信号分析.

主要方法:

  • 利用具有可变形卷积和C3模块的骨干网络进行增强的特征提取.
  • 使用GSConv和VOV-GSCSP模块实现了一个轻量级的子网络.
  • 使用信心传播集群 (CP-Cluster) 算法进行检测过.

主要成果:

  • 与YOLOv5.5相比,YFDM显示的参数减少了15.11%,GFLOP减少了38.9%.
  • 在使用WIoUv1损失函数时,达到0.68和72.4 FPS的最高AP0.5:0.95.
  • 该算法有效地减少模型重量,同时确保检测准确性和推断速度.

结论:

  • YFDM算法在莫尔斯码检测效率和准确性方面提供了显著的改进.
  • 它提供了一种适用于复杂信号环境的轻量级和快速解决方案.
  • 拟议的方法平衡了模型压缩与信号检测中的高性能.