非接觸式電能傳輸系統(tǒng)功率及傳輸效率研究
[Abstract]:Non-contact power transmission (ICPT, Inductively Coupled Power Transfer) system is based on the law of electromagnetic induction, combined with modern power electronic components frequency conversion, capacitive reactive power compensation and other technologies. The electric energy is effectively transferred from the primary side coil through the air gap to the secondary side coil so as to realize the transmission of the electric energy without electrical connection. At present, there is some research on this subject at home and abroad, and some countries have put the research results into practical application. Aiming at the loose coupling property of non-contact power transmission system, this paper studies and analyzes the relevant parameters of loosely coupled transformer in non-contact power transmission system by means of finite element simulation calculation, and analyzes the circuit by circuit analysis. Through simulation and optimization, the output power is increased and the transmission efficiency is improved. Firstly, the basic working principle of loosely coupled transformer in contactless power transmission system is analyzed systematically. The simulation model of contactless power transmission system is established, and the electromagnetic parameters are calculated by using three-dimensional finite element method. The experimental platform is built, and the measurement experiment of inductance parameters of loosely coupled transformer with iron core is designed. The feasibility of calculating inductance parameters by finite element method is verified. By using this method, the variation of inductance parameters of loosely coupled transformers in non-contact power transmission systems under different air gap thickness, different lateral displacement distance and longitudinal lateral displacement distance is compared and analyzed. On this basis, the magnetic field parameters are abstracted from the circuit model, and the decoupling of the primary and secondary sides of the loosely coupled transformer is realized based on the circuit theory, and the input power of the system under the condition of resonance is studied. The influence factors of output power and transmission efficiency, combined with inductance parameters, frequency, load resistance and other system parameters, are used to optimize the design of non-contact power transmission system.
【學(xué)位授予單位】:華北電力大學(xué)
【學(xué)位級別】:碩士
【學(xué)位授予年份】:2014
【分類號】:TM724
【參考文獻(xiàn)】
相關(guān)期刊論文 前10條
1 武瑛,嚴(yán)陸光,黃常綱,徐善綱;新型無接觸電能傳輸系統(tǒng)的性能分析[J];電工電能新技術(shù);2003年04期
2 武瑛,嚴(yán)陸光,徐善綱;運動設(shè)備無接觸供電系統(tǒng)耦合特性的研究[J];電工電能新技術(shù);2005年03期
3 孫躍;王琛琛;唐春森;戴欣;王智慧;;CPT系統(tǒng)能量與信號混合傳輸技術(shù)[J];電工電能新技術(shù);2010年04期
4 蘇玉剛;王智慧;孫躍;唐春森;;非接觸供電移相控制系統(tǒng)建模研究[J];電工技術(shù)學(xué)報;2008年07期
5 周雯琪;馬皓;何湘寧;;感應(yīng)耦合電能傳輸系統(tǒng)不同補償拓?fù)涞难芯縖J];電工技術(shù)學(xué)報;2009年01期
6 蘇玉剛;唐春森;孫躍;王智慧;;非接觸供電系統(tǒng)多負(fù)載自適應(yīng)技術(shù)[J];電工技術(shù)學(xué)報;2009年01期
7 王智慧;孫躍;蘇玉剛;戴欣;唐春森;;適用于非接觸電能傳輸系統(tǒng)的新型AC/DC/AC變換器[J];電工技術(shù)學(xué)報;2010年01期
8 秦海鴻;王慧貞;嚴(yán)仰光;;非接觸式松耦合感應(yīng)電能傳輸系統(tǒng)原理分析與設(shè)計[J];電源技術(shù)應(yīng)用;2004年05期
9 劉志宇,都東,齊國光;感應(yīng)充電技術(shù)的發(fā)展與應(yīng)用[J];電力電子技術(shù);2004年03期
10 孫躍;卓勇;蘇玉剛;王智慧;唐春森;;非接觸電能傳輸系統(tǒng)拾取機(jī)構(gòu)方向性分析[J];重慶大學(xué)學(xué)報(自然科學(xué)版);2007年04期
相關(guān)博士學(xué)位論文 前4條
1 夏晨陽;感應(yīng)耦合電能傳輸系統(tǒng)能效特性的分析與優(yōu)化研究[D];重慶大學(xué);2010年
2 周雯琪;感應(yīng)耦合電能傳輸系統(tǒng)的特性與設(shè)計研究[D];浙江大學(xué);2008年
3 唐春森;非接觸電能傳輸系統(tǒng)軟開關(guān)工作點研究及應(yīng)用[D];重慶大學(xué);2009年
4 楊芳勛;基于ICPT的無線電能傳輸網(wǎng)關(guān)鍵技術(shù)研究[D];重慶大學(xué);2012年
,本文編號:2301277
本文鏈接:http://www.wukwdryxk.cn/kejilunwen/dianlilw/2301277.html