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caoliu
- PQ分解法潮流计算程序。既可以用于高压输电网的潮流解算,又可以用于低压配电网的潮流解算,还可以同时解算输电网 加配电网的混合潮流问题。-PQ decomposition process flow calculation. Both high-voltage transmission networks can be used to calculate the trend, but also can be used in the trend of low voltage distribution
b21
- Taking into account all the parameters mentioned, forming the appropriate programming to the controller in order to achieve the synchronization between the two systems, the appropriate amplitude and as well as the power management to the DC to contro
psa
- 既可以用于高压输电网的潮流解算,又可以用于低压配电网的潮流解算,还可以同时解算输电网 加配电网的混合潮流问题,程序为PQ 分解法.-Both the trend for high-voltage transmission grid solver, but also the trend for low voltage distribution network solver, solver can also increase with the power transmission grid hy
9klmn4.ZIP
- 电网对称故障时双馈感应发电机低电压穿越控制Symmetrical grid fault of doubly fed induction generator low voltage ride-through control-Symmetrical grid fault of doubly fed induction generator low voltage ride-through control
LowVoltageMicroGride
- 基于simulink的西门子标准400V低压馈线模型,其中包含一个PV光伏并网模型-Based on the the simulink Siemens standard 400V low voltage feeder model, which contains a PV photovoltaic grid model
volsag
- Voltage sags are one of the main problems in transmission and distribution grids with high penetration of distributed generation. This paper proposes a voltage support control scheme for grid-connected power sources under voltage sags. The cont
PRI
- In this paper, a simple single-phase grid connected photovoltaic (PV) inverter topology consisting of a boost section, a low-voltage single-phase inverter with an inductive filter, and a step-up transformer interfacing the grid is considered. Ideally
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
Power-Converters--smart-instruments
- With the increasing penetration of renewable energies as distributed generation (DG) in smart grid scheme, technical problems arise in both distribution and transmission system level. Undesirable voltage is the main problem for connection of DG
BingWang
- 研究适合低压使用的并网逆变器,直流稳压电源作为逆变器的输入,能够将400V的直流电压转换成有效值为220V,工频为50Hz的电网电压,实现并网。(A grid connected inverter suitable for low voltage operation is studied. The DC regulated power supply is used as the input of the inverter, and the DC voltage of 400V can be co
battery_buckboost
- 基于simulink的双向DCDC仿真,实现高压转低压给蓄电池充电,蓄电池放电可反向升压回馈电网。(Based on simulink's bidirectional DCDC simulation, the battery can be charged at high voltage to low voltage, and the battery discharge can be reverse boosted back to the grid.)
Matlab
- A single phase grid connected with a photovoltaic (PV) power system that will provide high voltage gain with state model analysis for the control of the system has been presented. First the photovoltaic system is designed and simulated using MATLAB