<dd id="mimiw"><samp id="mimiw"></samp></dd>

<address id="mimiw"><nav id="mimiw"><delect id="mimiw"></delect></nav></address>

    Suzhou Electric Appliance Research Institute
    期刊號: CN32-1800/TM| ISSN1007-3175

    Article retrieval

    文章檢索

    首頁 >> 文章檢索 >> 文章瀏覽排名

    基于RTDS/CBuilder的雙調諧濾波器通用模型開發

    來源:電工電氣發布時間:2018-12-17 13:17 瀏覽次數:566
    基于RTDS/CBuilder的雙調諧濾波器通用模型開發
     
    方葦1,寧晗1,付玉婷1,朱添安2
    (1 國網湖北省電力公司檢修公司,湖北 武漢 430051;2 國網湖北省電力公司宜昌供電公司,湖北 宜昌 443000)
     
        摘 要:基于RTDS/CBuilder采用自定義編程技術開發雙調諧濾波器的通用模型。該模型依據實際工程的典型接線結構,人機交互界面根據雙調諧濾波器的串并聯諧振回路形成工程參數輸入對話框,實時運行程序在計及阻尼系數與電感品質因數、電容介質損耗的關系條件下,采用C語言編程技術構建數值遞推方程。以實例對比法對所開發模型進行了仿真驗證,結果表明:該模型不僅可以應用于不同接線結構的雙調諧濾波器的建模,還能夠有效節省整個模型的節點數量,從而提高RTDS設備的利用效率。
        關鍵詞:雙調諧濾波器;仿真測試;自定義模型
        中圖分類號:TN713     文獻標識碼:A     文章編號:1007-3175(2018)12-0027-05
     
    Development of General Model for Double-Tuned Filters Based on RTDS/CBuilder
     
    FANG Wei1, NING Han1, FU Yu-ting1, ZHU Tian-an2
    (1 State Grid Hubei Electric Power Company Maintenance Company, Wuhan 430051, China;
    2 State Grid Hubei Electric Power Company Yichang Power Supply Company, Yichang 443000, China)
     
        Abstract: This paper used user-defined programming technology to develop general model of double tuned filter based on RTDS/CBuilder. The model appliedthe typical connection structure of actual engineering, man-machine interactive interface was composed of input dialog box for engineering parameters on the basis of series parallel resonant circuit, real-time operation procedures were compiled by C language programming technology to construct the numerical recursive equations in consideration of the relationship between damping coefficient and quality factor of inductance, dielectric loss of capacitance. The paper verifiedthe versatility and accuracy of the model by living example contrast. The results show that the model not only can be applied to modeling the different connection structure of double tuned filter, but also effectively save the nodes of the system, which improves the utilization efficiency of RTDS equipment.
        Key words: double-tuned filter; simulation testing; user-defined model
     
    參考文獻
    [1] 王祥旭,郭春林,肖湘寧,等. 基于RTDS的±800 kV特高壓直流輸電系統的建模與仿真[J]. 華東電力,2011,39(3):335-338.
    [2] 譚濤亮. 含特高壓直流的多饋入直流電網RTDS建模[J]. 電力建設,2013,34(9):55-60.
    [3] 邊宏宇,張海波,安然然,等.RTDS上機電暫態仿真自定義模塊的研究與開發[J]. 電力系統自動化,2009,33(22):61-65.
    [4] DOMMEL H W. 電力系統電磁暫態計算理論[M]. 李永莊,林集明,曾昭華,譯. 北京:水利電力出版社,1991.
    [5] 徐志恒,錢珞江.RTDS用戶自定義元件模型(UDC)的應用方法[J] . 電力系統保護與控制,2009,37(22):141-145.
    [6] 宋蕾,文俊,閆金春,等. 高壓直流輸電系統直流濾波器的設計[J]. 高電壓技術,2008,34(4):647-651.
    [7] 王峰,徐政,薛英林. 參數可調節的高電壓直流輸電系統直流濾波器設計方案[J]. 高電壓技術,2011,37(4):1035-1040.
    [8] 熊麗霞,錢珞江,熊俊杰. 基于RTDS自定義元件技術的集合式電容器模型開發[J]. 江西電力,2011,35(3):11-13.
    [9] HOCKENBERRY J R,LESIEUTRE B C.Evaluation of uncertainty in dynamic simulations of power system model:The probabilistic collocation method[J]. IEEE Transactions on Power Systems,2004,19(3):1483-1491.

     

    亚洲无码av成人在线,亚洲影院AV无码一区二区,亚洲无码第二页,成人无码AV网站在线观看不卡 (function(){ var bp = document.createElement('script'); var curProtocol = window.location.protocol.split(':')[0]; if (curProtocol === 'https') { bp.src = 'https://zz.bdstatic.com/linksubmit/push.js'; } else { bp.src = 'http://push.zhanzhang.baidu.com/push.js'; } var s = document.getElementsByTagName("script")[0]; s.parentNode.insertBefore(bp, s); })();