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实用芯式电力变压器串联与并联电容的估算及其数学关系的建立
Estimation of Series- and Shunt-Capacitances of a Practical Core-Type Power Transformer and Establishing Mathematical Relationship Thereof
| 作者 | Rajesh Lekkireddy · Krupa Shah · Pravin Magdum · Chiragkumar Parekh |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2025年5月 |
| 技术分类 | 功率器件技术 |
| 技术标签 | SiC器件 多物理场耦合 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电力变压器 电容估算 梯型电路模型 终端连接 驱动点阻抗数据 |
语言:
中文摘要
通过表征电力变压器的高频数据来合成能够准确捕捉其内部电磁耦合的物理可实现梯形电路模型的方法已被广泛接受。然而,具有挑战性的部分是估算实际电力变压器的电感和电容,因为频率响应会受到铁芯、绕组间耦合、相应的端子连接以及激励频率的影响。本文报道了一种在不拆解相互连接绕组的情况下估算实际变压器中测试绕组的串联电容和并联电容的方法。该方法包括用电磁耦合梯形电路来表示多绕组变压器(单相或三相),并提出一种将复杂电路简化为单个电容梯形电路的方法,以用于电容估算。这项任务主要包括提出新颖的端子连接方式、利用分接头电压分布,以及识别驱动点阻抗数据的有用特征,从而最大限度减小以下因素的影响:其一,电感和绕组间电容;其二,未测试绕组和铁芯。此外,旨在通过系统推导的公式提取与串联电容和并联电容相关的精确信息。首先通过仿真结果展示了所提方法的有效性,随后在变压器行业一台15 MVA、66/11.55 kV、Δ/Y联结的实际三相变压器上进行了实验测量。
English Abstract
The approach of synthesising a physically realisable ladder circuit model that accurately captures the electromagnetic coupling within a power transformer by characterising its high-frequency data is widely accepted. However, the challenging part is to estimate the inductances and capacitances pertaining to a practical power transformer, as the frequency response is influenced by the core, coupling between windings, the corresponding terminal connections and frequency of excitation. In this paper, a method to estimate the series- and shunt-capacitances of the test-winding in a practical transformer is reported without disassembling the inter-connected windings. The method involves representing a multi-winding transformer (1- or 3- ) by electromagnetically coupled ladder circuits and suggesting a way to reduce complex circuits into a single, capacitive ladder circuit for the purpose of capacitance estimation. This task essentially involves proposing novel terminal connections, utilising on-tap voltage distribution, and identifying useful features of the driving-point impedance data so as to minimise the influence of the i) inductances, and interwinding capacitances, ii) non-tested windings, and core. Further, it is aimed to extract exact information pertaining to series-, shunt-capacitances through systematically derived formulas. The capability of the proposed method is initially demonstrated by simulation results followed by experimental measurements on 15 MVA, 66/11.55kV, /Y, a practical 3- unit of the transformer industry.
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SunView 深度解读
该研究对阳光电源的变压器设计与优化具有重要指导意义。通过精确建模变压器串并联电容参数,可提升ST系列储能变流器和SG系列光伏逆变器中高频变压器的设计精度,优化其高频特性。特别是在PowerTitan等大型储能系统中,该方法有助于提高变压器在高频谐波和瞬态工况下的性能表现。对于车载OBC充电机等对变压器体积和效率要求较高的产品,该技术可用于优化变压器结构设计,实现小型化和高效率的目标。此外,该建模方法也可集成到iSolarCloud平台,用于变压器状态监测和故障预警。