搜索资源列表
buck
- Buck降压转换电路的Simulink模型,可实现直流电压的降压-Buck buck converter circuit Simulink model can be achieved step-down DC voltage
APF
- 有缘电力滤波器APF的MATLAB仿真,采用直流电压控制和Ip—Iq的检测方法-APF power filter destined MATLAB simulation, DC voltage control and detection methods Ip-Iq
up
- 升压变换器 用于将输入的直流电压升高至输出 -Boost converter is used to input pressure to output DC
kaiguan
- 主要开关电源用matlab仿真,实现从220v交流转化为直流电压-The main switching power supply with matlab simulation, converted into a DC voltage from 220v AC
electromagnetic-field
- 横截面为矩形的无限长槽由三块接地导体板构成,槽的盖板直流电压100v,求矩形槽的电位分布-A infinite long slot, with rectangle cross-section, consists of three grounded conductive plate and one coverplate with 100 voltage. Please give the potential distributions inside slot
CUK
- cuk电路仿真,改变IGBT的参数,对直流电压升降压。-cuk circuit simulation, the DC voltage buck.
S130920052
- 以12脉波整流电路为研究对象,有效降低网侧电流的谐波畸变,其主要原因在于所采用的移相变压器,能过它可使各6脉波二极管整流器产生的低次谐波相互抵消。利用Matlab—Simulink建立模型对其进行仿真,并对其产生谐波电流进行分析和计算,阐述了其消谐原理。这种整流电路采用两个6脉波二极管整流器进行串联,功率因数较高,提高了直流电压的输出能力,对减少电网中的谐波干扰十分有效,可以有效地消除钢厂电力系统中较高次数的谐波。-Low-order harmonics with 12 pulse rectif
DDPMSG
- 发电机并网,机侧双闭环控制,网侧双闭环控制,控制很好,中间直流电压平稳-Generators and network-side double-loop control, network-side dual-loop control, control is very good, steady intermediate DC voltage
BLDC_5_44_phase_fun
- 基于Matlab实验平台实现五相无刷直流电动机的建模与仿真,分析了直流电压、负载转矩等参数的变化对系统性能的影响。仿真结果验证了分析的正确性和可靠性。-Modeling and Simulation of five phase brushless DC motor based on Matlab experimental platform, the influence of the parameters of DC voltage and load torque on the performan
switch_power
- 降压它激推挽DC/DC的电路,输入24V直流电压,输出8V直流电压,主要起降压隔离的作用-The push-pull DC/DC circuit
danxinagmax
- z源逆变器的单相最大升压控制,可以更进一步的改善直流侧电压值,相对于简单升压控制可以减小直流电压的输入值。-Z source inverter single-phase biggest boost control, can further improve the dc side voltage value, compared with the simple boost control can reduce the input value of the dc voltage.
bbtufzwb
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用QBhhSwV定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,yBZiAhn参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the QBhhSwV fixed power control, Udc-Q using DC-AC decoupling control, the system DC
bcyradpi
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用fmuiRzP定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,lkVVGOx参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the fmuiRzP fixed power control, Udc-Q using DC-AC decoupling control, the system DC
chywrtsz
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用CLSgHSA定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,NvpXqaR参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the CLSgHSA fixed power control, Udc-Q using DC-AC decoupling control, the system DC
cjyhzkec
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用RsrzeWG定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,xCpggNN参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the RsrzeWG fixed power control, Udc-Q using DC-AC decoupling control, the system DC
dniqnbqe
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用GlhZeoR定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,UYutUkk参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the GlhZeoR fixed power control, Udc-Q using DC-AC decoupling control, the system DC
dpkrinpg
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用ValtLNN定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,MAblgaR参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the ValtLNN fixed power control, Udc-Q using DC-AC decoupling control, the system DC
dqpjpviv
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用UtIurSW定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,HKkImXL参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the UtIurSW fixed power control, Udc-Q using DC-AC decoupling control, the system DC
dwxisqwa
- 通过matlab代码,双向PCS控制仿真,DC-DC部分采用CIjFVlP定功率单环控制,DC-AC采用Udc-Q解耦控制,系统直流电压由后级DC-AC实现稳定控制,JqbJxfV参数合适-Through the matlab code, two-way PCS control simulation, DC-DC part of the CIjFVlP fixed power control, Udc-Q using DC-AC decoupling control, the system DC
apf_three_phase_PWM_double_loop
- 三相电力有源滤波器,基于pq谐波电流检测的三相有源滤波器模型。输出为直流电压。(Three-phase Active Power Filter)
