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【
matlab
】
chap4
DL : 0
《滑膜变结构控制matlab仿真》第四章- synovial VSC matlab simulation Chapter 4
Update
: 2024-05-04
Size
: 39936
Publisher
:
倪俊雄
【
matlab
】
chap5
DL : 0
《滑膜变结构控制matlab仿真》第五章- synovial VSC matlab simulation Chapter 5
Update
: 2024-05-04
Size
: 19456
Publisher
:
倪俊雄
【
matlab
】
chap6
DL : 0
《滑模变结构控制matlab仿真》第六章- synovial VSC matlab simulation Chapter 6
Update
: 2024-05-04
Size
: 23552
Publisher
:
倪俊雄
【
matlab
】
MTDC_VSC_HVDC_droop_5_5_sfun
DL : 0
The principal characteristic of VSC-HVDC transmission is its ability to independently control the reactive and real power flow at each of the AC systems to which it is connected, at the Point of Common Coupling (PCC). In contrast to line-commutated HVDC transmission, the polarity of the DC link voltage remains the same with the DC current being reversed to change the direction of power flow.
Update
: 2024-05-04
Size
: 70656
Publisher
:
jafar
【
matlab
】
Book_web-models-booklet_version-2_1
DL : 0
This document provides a brief description of the models implemented in Matlab/Simulink and used the cases studies presented throughout the book. Although the models were developed in different recent versions of Simulink a final test was conducted in MATLAB R2013a. The models included are the following: • DFIG WT robust model for steady state simulation • DFIG WT robust model for steady state simulation in a HVDC system • Offshore Wind Farm Connection Using Point-to-Point VSC-HVDC (A) (changes in wind farm power output) • Offshore Wind Farm Connection Using Point-to-Point VSC-HVDC (B) (FRT analysis)
Update
: 2024-05-04
Size
: 404480
Publisher
:
jafar
【
matlab
】
hvdc_vsc_4_terminals
DL : 0
电压源换流器型高压直流输电VSC-HVDC( Voltage Source Converter HVDC) 技术是当今世界电力电子技术应用领域的制高点.能有效提高电能质量并确保电网安全稳定运行,是智能电网发展中具有代表性的 关键技术之一. -VSC-HVDC(Voltage Source Converter HVDC)
Update
: 2024-05-04
Size
: 81920
Publisher
:
John Xu
【
Linux-Unix
】
sata_vsc
DL : 0
sata vsc.c - Vitesse VSC7174 4 port DPA SATA for Linux v2.13.6.
Update
: 2024-05-04
Size
: 4096
Publisher
:
xqxltn
【
Linux-Unix
】
intel_psr
DL : 0
Prepare VSC packet as per EDP 1.3 spec, Table 3.10.
Update
: 2024-05-04
Size
: 5120
Publisher
:
jangtymeng
【
Energy industry
】
PVmodel
DL : 0
50kw 太阳能电站,MPPT,dc- link vsc,包含详细模型和平均模型,详细说明和视频。-50kw solar power, MPPT, dc- link vsc, with detailed models and average models, detailed instructions and video.
Update
: 2024-05-04
Size
: 649216
Publisher
:
william
【
File Format
】
LinkQueue
DL : 0
数据结构的队列代码,用c语言实现的。开发环境是vsc++6.0-Queue code data structures, using c language. Vsc++ 6.0 development environment
Update
: 2024-05-04
Size
: 1024
Publisher
:
Steven
【
matlab
】
VSC_youyuan
DL : 0
VSC-HVDC完整例程。高压直流输电模型,直接可用-VSC-HVDC complete routines. HVDC model, directly available
Update
: 2024-05-04
Size
: 28672
Publisher
:
jiangbinkai
【
matlab
】
SPWM-based-VSC-based-PV-single-phase-converter.zi
DL : 0
very important about pulse width modulation
Update
: 2024-05-04
Size
: 40960
Publisher
:
omar
【
Compress-Decompress algrithms
】
Thstribution-Static
DL : 0
This paper presents the modeling and implementation of a three-phase DSTATCOM (Distribution Static Compensator) using STF (Self Tuning Filter) based IRPT (Instantaneous Reactive Power Theory) control algorithm for power quality improvement. It is used for harmonics elimination, load balancing and reactive power compensation at distorted PCC (Point of Common Coupling) voltages under nonlinear loads. An adaptive fuzzy logic controller is used to control the dc bus voltage of VSC (Voltage Source Converter) based DSTATCOM to improve the response and to reduce the overshoot and undershoot of traditiona
Update
: 2024-05-04
Size
: 27327488
Publisher
:
yangs
【
VC/MFC
】
Thistributiatic
DL : 0
This paper presents the modeling and implementation of a three-phase DSTATCOM (Distribution Static Compensator) using STF (Self Tuning Filter) based IRPT (Instantaneous Reactive Power Theory) control algorithm for power quality improvement. It is used for harmonics elimination, load balancing and reactive power compensation at distorted PCC (Point of Common Coupling) voltages under nonlinear loads. An adaptive fuzzy logic controller is used to control the dc bus voltage of VSC (Voltage Source Converter) based DSTATCOM to improve the response and to reduce the overshoot and undershoot of traditional PI (Proportional-Integral) controller under unbalanced loading conditions and supply voltage fluctuations.
Update
: 2024-05-04
Size
: 15247360
Publisher
:
yangs
【
CAD
】
VSC_HVDC_acc
DL : 0
VSC开环控制用以设置高压直流输电的基本仿真分析-VSC open-loop control to set the basic simulation HVDC
Update
: 2024-05-04
Size
: 16384
Publisher
:
miaolegemi
【
matlab
】
VSC_PLL_Simulink_PQ
DL : 0
This modeling VSC and P-This is modeling VSC and PLL
Update
: 2024-05-04
Size
: 34816
Publisher
:
Nguyen Van Vinh
【
File Format
】
DQ-Reference-Frame-Theory
DL : 0
Pulse Width Modulation (PWM), Shunt Active Power Filter (SAPF), Voltage Source Converter (VSC).
Update
: 2024-05-04
Size
: 192512
Publisher
:
mohamed
【
Compress-Decompress algrithms
】
develoPednthsutdyof
DL : 0
However, it has also proven in the same literature that indirect current control technique is free switching ripples and hence it gives better performance during load perturbation whereas in case of direct current control method switching ripples increases with the increase in the load current. Generally the DC capacitor voltage of VSC-However, it has also proven in the same literature that indirect current control technique is free switching ripples and hence it gives better performance during load perturbation whereas in case of direct current control method switching ripples increases with the increase in the load current. Generally the DC capacitor voltage of VSC
Update
: 2024-05-04
Size
: 19135488
Publisher
:
杨松
【
matlab
】
Three_Phase_VSC_pos_neg_current_ctrl_atan
DL : 0
Three phase VSC with dedicated positive and negative sequence current control
Update
: 2024-05-04
Size
: 50176
Publisher
:
shokhi
【
matlab
】
Control-of-Multi-terminal-VSC-HVDC
DL : 0
Given these two interests for HVDC in the Norwegian offshore, the use of Multiterminal HVDC (MTDC) is a potential solution for the integration of the wind farms and oil/gas platforms into the onshore grid. Control systems for multiterminal HVDC (MTDC) networks should be developed and their operation be analyzed. First controllers for two-terminal HVDC connected to different types of AC grids must be developed and analyzed. Then this must be extended to develop control of multiterminal HVDC system. Models should be developed in PSCAD/EMTDC simulation software and results should be analyzed to validated proposed control schemes.
Update
: 2024-05-04
Size
: 2548736
Publisher
:
live
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