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Equivalent Circuits for Practical Transformers01:28

Equivalent Circuits for Practical Transformers

1.3K
The practical equivalent circuits of single-phase two-winding transformers exhibit significant deviations from their idealized versions due to the inherent properties of winding resistance and finite core permeability. These properties result in real and reactive power losses, affecting the transformer's performance. Understanding these deviations is crucial for designing more efficient transformers.
In a practical transformer, each winding exhibits resistance and leakage reactance. The...
1.3K
Transformers with Off-Nominal Turns Ratios01:25

Transformers with Off-Nominal Turns Ratios

493
In scenarios involving parallel transformers with disparate ratings, developing per-unit models requires accommodating off-nominal turns ratios. This situation arises when the selected base voltages are not proportional to the transformer’s voltage ratings. Consider a transformer where the rated voltages are related by the term a. If the chosen voltage bases satisfy a relationship involving term b, term c is defined as the ratio of these bases. This ratio is then substituted into the...
493
Raman Spectroscopy Instrumentation: Overview01:26

Raman Spectroscopy Instrumentation: Overview

998
A conventional Raman spectrophotometer includes a laser source, a sample holding system, a wavelength selector, and a detector.
The monochromatic laser source, typically using visible or near-infrared radiation, generates a highly focused beam of light. This light interacts with the molecules of the sample, scattering some of the light. Liquid and gaseous samples are usually tested in ordinary glass capillaries, while solids can be analyzed as powders packed in capillaries or as potassium...
998
Energy Losses in Transformers01:21

Energy Losses in Transformers

1.3K
In an ideal transformer, it is assumed that there are no energy losses, and, hence, all the power at the primary winding is transferred to the secondary winding. However, in reality,  the transformers always have some energy losses, and, hence, the output power obtained at the secondary winding is less than the input power at the primary winding due to energy losses.
There are four main reasons for energy losses in transformers.
The first cause can be  the high resistance of the...
1.3K
Instrument Transformers01:23

Instrument Transformers

426
Instrument transformers, comprising voltage transformers (VTs) and current transformers (CTs), play crucial roles in power substations by providing isolated replicas of current or voltage for measurement and protection purposes. Voltage transformers reduce the primary voltage to levels suitable for relay operation and measurement, while current transformers scale down the primary current. The primary winding of a current transformer often consists of a single turn, achieved by threading the...
426
Double Resonance Techniques: Overview01:12

Double Resonance Techniques: Overview

669
Double resonance techniques in Nuclear Magnetic Resonance (NMR) spectroscopy involve the simultaneous application of two different frequencies or radiofrequency pulses to manipulate and observe two distinct nuclear spins. One important application of double resonance is spin decoupling, which selectively suppresses coupling with one type of nucleus while observing the NMR signal from another nucleus, simplifying the spectrum and enhancing resolution.
Spin decoupling is usually achieved by...
669

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相关实验视频

Updated: Jan 9, 2026

Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy ATOM
07:19

Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy ATOM

Published on: June 28, 2017

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在使用变压器模型的拉曼放大系统中进行OTDR轨迹扭曲校正.

Md Ghulam Saber, Qingyi Guo, Zhiping Jiang

    Optics letters
    |December 1, 2025
    PubMed
    概括

    我们开发了一个变压器模型来纠正光时域反射计 (OTDR) 在拉曼增强系统中的扭曲. 这种方法可以准确地恢复光纤痕迹,而不需要功率或参考数据,简化诊断.

    科学领域:

    • 光学工程是指光学工程.
    • 信号处理 信号处理
    • 机器学习 机器学习

    背景情况:

    • 拉曼增强光学系统容易在光学时域反射仪 (OTDR) 轨迹中出现扭曲.
    • 现有的校正方法通常需要复杂的参数,如拉曼功率或参考轨迹.
    • 这些局限性阻碍了部署光纤网络的准确运行监控和诊断.

    研究的目的:

    • 引入一种新的变压器模型来纠正由刺激拉曼散射 (SRS) 引起的OTDR轨迹扭曲.
    • 开发一种仅使用易于获得的OTDR跟踪数据,光纤长度和波长运行的方法.
    • 为了消除对拉曼功率信息和扭曲校正中的参考轨迹的需求.

    主要方法:

    • 设计了一个变压器模型,可以直接从扭曲的OTDR轨迹中预测累积的SRS增益.
    • 该模型利用扭曲的痕迹,纤维长度和波长作为输入.
    • 预测的SRS增益被用来在一个步骤中纠正OTDR轨迹,消除拉曼引起的扭曲.

    主要成果:

    • 拟议的方法在180公里的拉曼增强跨度上显著降低了平均平方误差 (MSE) 超过一个数量级.
    • 基线跟踪特征和连接器损失以高保真度恢复.
    • 该模型在拉曼功率的不确定性下表现出强度.

    更多相关视频

    A Novel Technique for Raman Analysis of Highly Radioactive Samples Using Any Standard Micro-Raman Spectrometer
    07:52

    A Novel Technique for Raman Analysis of Highly Radioactive Samples Using Any Standard Micro-Raman Spectrometer

    Published on: April 12, 2017

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    All-electronic Nanosecond-resolved Scanning Tunneling Microscopy: Facilitating the Investigation of Single Dopant Charge Dynamics
    11:33

    All-electronic Nanosecond-resolved Scanning Tunneling Microscopy: Facilitating the Investigation of Single Dopant Charge Dynamics

    Published on: January 19, 2018

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    相关实验视频

    Last Updated: Jan 9, 2026

    Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy ATOM
    07:19

    Microfluidic Imaging Flow Cytometry by Asymmetric-detection Time-stretch Optical Microscopy ATOM

    Published on: June 28, 2017

    10.7K
    A Novel Technique for Raman Analysis of Highly Radioactive Samples Using Any Standard Micro-Raman Spectrometer
    07:52

    A Novel Technique for Raman Analysis of Highly Radioactive Samples Using Any Standard Micro-Raman Spectrometer

    Published on: April 12, 2017

    13.2K
    All-electronic Nanosecond-resolved Scanning Tunneling Microscopy: Facilitating the Investigation of Single Dopant Charge Dynamics
    11:33

    All-electronic Nanosecond-resolved Scanning Tunneling Microscopy: Facilitating the Investigation of Single Dopant Charge Dynamics

    Published on: January 19, 2018

    10.2K

    结论:

    • 变压器模型提供了一种有效的,单步解决方案,用于纠正拉曼诱导的OTDR扭曲.
    • 该方法简化了校正过程并提高了稳定性,使其适用于可扩展的,在使用中的诊断.
    • 这种方法提高了监控高容量光纤链路的可靠性和准确性.