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LVRT

于 2015-09-14 发布 文件大小:1184KB
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  不平衡电网条件下,逆变器根据并网准则的要求,需要不脱网运行,并提供无功支撑。本仿真实现了不平衡条件下的逆变器低穿运行,并实现在故障后快速的功率回复(Under unbalanced grid conditions, the inverter according to the guidelines and requirements of the network, you need not run off the network, and provide reactive support. The Simulation of the inverter under unbalanced conditions, low wear operation, and after the failure to quickly realize the power of reply)

文件列表:

LVRT
....\AD_abcTodq.m,4154,2013-04-26
....\AD_dqToabc.asv,1429,2013-04-22
....\AD_dqToabc.m,1528,2013-04-26
....\dq_ab_P.m,1227,2012-07-13
....\Eabc_dq_PN.m,1667,2012-07-13


....\iabc_dq_PN.m,1736,2012-07-13

....\inverter_001.mdl,66045,2013-04-25
....\PNS_Uq_PLL.m,3837,2013-05-15
....\PSfilter.m,1811,2012-05-28


....\PV_500kW.mdl,266061,2014-03-09
....\PV_500kW_201403.mdl,331948,2014-05-07
....\PV_500kW_201405.mdl,313495,2015-05-18
....\PV_array.mdl,433158,2013-04-21
....\slprj
....\.....\_sfprj
....\.....\......\ThreePhaseGridConnection
....\.....\......\........................\_self
....\.....\......\........................\.....\sfun
....\.....\......\........................\.....\....\html
....\.....\......\........................\.....\....\....\chart1
....\.....\......\........................\.....\....\....\chart2
....\.....\......\........................\.....\....\....\chart3
....\.....\......\........................\.....\....\....\chart4
....\.....\......\........................\.....\....\....\chart5
....\.....\......\........................\.....\....\info
....\.....\......\........................\.....\....\....\binfo.mat,2549,2013-04-22
....\.....\......\........................\.....\....\....\chart1.mat,2703,2013-04-22
....\.....\......\........................\.....\....\....\chart2.mat,2705,2013-04-22
....\.....\......\........................\.....\....\....\chart3.mat,2709,2013-04-22
....\.....\......\........................\.....\....\....\chart4.mat,1678,2013-04-22
....\.....\......\........................\.....\....\....\chart5.mat,2093,2013-04-22
....\.....\......\........................\.....\....\src
....\.....\......\........................\.....\....\...\c1_ThreePhaseGridConnection.c,40554,2013-04-22
....\.....\......\........................\.....\....\...\c1_ThreePhaseGridConnection.h,1135,2013-04-22
....\.....\......\........................\.....\....\...\c1_ThreePhaseGridConnection.obj,27994,2013-04-22
....\.....\......\........................\.....\....\...\c2_ThreePhaseGridConnection.c,40555,2013-04-22
....\.....\......\........................\.....\....\...\c2_ThreePhaseGridConnection.h,1135,2013-04-22
....\.....\......\........................\.....\....\...\c2_ThreePhaseGridConnection.obj,27994,2013-04-22
....\.....\......\........................\.....\....\...\c3_ThreePhaseGridConnection.c,40554,2013-04-22
....\.....\......\........................\.....\....\...\c3_ThreePhaseGridConnection.h,1135,2013-04-22
....\.....\......\........................\.....\....\...\c3_ThreePhaseGridConnection.obj,27994,2013-04-22
....\.....\......\........................\.....\....\...\c4_ThreePhaseGridConnection.c,32823,2013-04-22
....\.....\......\........................\.....\....\...\c4_ThreePhaseGridConnection.h,1135,2013-04-22
....\.....\......\........................\.....\....\...\c4_ThreePhaseGridConnection.obj,22687,2013-04-22
....\.....\......\........................\.....\....\...\c5_ThreePhaseGridConnection.c,36732,2013-04-22
....\.....\......\........................\.....\....\...\c5_ThreePhaseGridConnection.h,1135,2013-04-22
....\.....\......\........................\.....\....\...\c5_ThreePhaseGridConnection.obj,25314,2013-04-22
....\.....\......\........................\.....\....\...\lccstub.obj,384,2013-04-22
....\.....\......\........................\.....\....\...\rtwtypes.h,8816,2013-04-22
....\.....\......\........................\.....\....\...\rtwtypeschksum.mat,1012,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.bat,77,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.c,10482,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.exp,66,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.h,977,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.lib,2924,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.lmk,2649,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.lmko,834,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun.obj,8358,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun_debug_macros.h,18051,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun_registry.c,7061,2013-04-22
....\.....\......\........................\.....\....\...\ThreePhaseGridConnection_sfun_registry.obj,35866,2013-04-22
....\SOGI.mdl,419277,2015-08-03
....\SPLL.asv,2690,2013-04-27
....\SPLL.m,4351,2013-04-27
....\ThreePhaseGridConnection_sfun.mexw32,301568,2013-04-22
....\VoltOffset.m,1922,2012-06-14

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    拉格朗日算法已知三组温度与压力数据:(3,53.5) (4,55.3) (5,56.2)求4.15对应的值为55.492375,结果正确。如果将以上数组顺序颠倒,已知压力55.492375求对应的温度,结果为4.185739,可以看到上下两个结果误差较大,就是说不能象这样去颠倒顺序去求值的。但是实际上我们可能经常要求知道压力去求温度,那么遇到这样的情况,只能采用试算法:一种简单的方法就是二分法迭代,书上都有介绍就不多讲了。(Lagrange method已知三组温度与压力数据:(3,53.5) (4,55.3) (5,56.2)求4.15对应的值为55.492375,结果正确。如果将以上数组顺序颠倒,已知压力55.492375求对应的温度,结果为4.185739,可以看到上下两个结果误差较大,就是说不能象这样去颠倒顺序去求值的。但是实际上我们可能经常要求知道压力去求温度,那么遇到这样的情况,只能采用试算法:一种简单的方法就是二分法迭代,书上都有介绍就不多讲了。)
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