國際電網(wǎng)輸電技術(shù)發(fā)展趨勢及應(yīng)用研究
[Abstract]:The rapid development of the electric power industry in our country is far ahead of the rest of the world. Considering the technical route of future grid development, we still need to look at the major power grids around the world and have a deep understanding of some of the application directions of the existing technologies. At the same time, the future development of the trend of in-depth and meticulous research, which is not only conducive to the operation and development of the entire power grid system in China, but also to promote the development of the national economy. Based on the research and collection of domestic and foreign transmission technology, this paper studies the following contents: first of all, through some other countries and regions such as the North American grid, The status of the power grid in Western Europe and Japan is analyzed and summarized in detail, including the existing grid structure in these countries and regions, the horizontal and vertical history of the development of the power grid, Some difficulties in the development of power grid and how to solve these difficulties. Then, through investigation and analysis of the data collected and processed, the technical characteristics and development status of several common transmission technologies are analyzed and described respectively, and the application conditions of various technologies and the factors restricting the development are clarified. And for the future development and overcome these bottlenecks put forward some opinions and suggestions. Then, through the investigation and summary of the transmission technology used in the main international typical power grids, the adaptive conditions of various transmission technologies are defined, and the characteristics of the development of the power grid in different regions and the application conditions of the related technologies are compared. The development direction of transmission technology in China is discussed in this paper. Then, the prospective research progress of international grid transmission technology is studied, including superconducting transmission, split phase transmission and half wave transmission. At the end of this paper, the main work is summarized, the innovation of this paper is summarized, and the future development is prospected.
【學(xué)位授予單位】:華北電力大學(xué)(北京)
【學(xué)位級別】:碩士
【學(xué)位授予年份】:2017
【分類號】:TM72
【參考文獻(xiàn)】
相關(guān)期刊論文 前10條
1 肖立業(yè);林良真;;超導(dǎo)輸電技術(shù)發(fā)展現(xiàn)狀與趨勢[J];電工技術(shù)學(xué)報(bào);2015年07期
2 游菲;袁旭峰;劉躍;;柔性直流輸電在中國電網(wǎng)中的應(yīng)用前景[J];現(xiàn)代機(jī)械;2014年03期
3 湯廣福;賀之淵;龐輝;;柔性直流輸電工程技術(shù)研究、應(yīng)用及發(fā)展[J];電力系統(tǒng)自動化;2013年15期
4 湯涌;卜廣全;易俊;;印度“7.30”、“7.31”大停電事故分析及啟示[J];中國電機(jī)工程學(xué)報(bào);2012年25期
5 湯涌;;電力系統(tǒng)安全穩(wěn)定綜合防御體系框架[J];電網(wǎng)技術(shù);2012年08期
6 黃清;單葆國;;巴西未來10年輸電擴(kuò)展計(jì)劃及投資機(jī)會分析[J];能源技術(shù)經(jīng)濟(jì);2011年05期
7 肖立業(yè);林良真;;未來電網(wǎng)初探[J];電工電能新技術(shù);2011年01期
8 李永堅(jiān);黃紹平;許志偉;張永康;;不換位高壓線路分相建模研究及其不平衡性分析[J];電力系統(tǒng)自動化;2010年19期
9 張文亮;湯涌;曾南超;;多端高壓直流輸電技術(shù)及應(yīng)用前景[J];電網(wǎng)技術(shù);2010年09期
10 肖立業(yè);林良真;;構(gòu)建全國統(tǒng)一的新能源電網(wǎng),推進(jìn)我國智能電網(wǎng)的建設(shè)[J];電工電能新技術(shù);2009年04期
相關(guān)博士學(xué)位論文 前2條
1 任敬國;VSC-HVDC輸電系統(tǒng)的協(xié)調(diào)控制與穩(wěn)態(tài)分析方法研究[D];山東大學(xué);2014年
2 袁旭峰;新型混合多端直流輸電系統(tǒng)理論及其若干關(guān)鍵問題研究[D];華中科技大學(xué);2007年
相關(guān)碩士學(xué)位論文 前1條
1 劉令富;電網(wǎng)電壓等級序列研究[D];華北電力大學(xué)(北京);2009年
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