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1.
依据电力系统的近似数学模型,提出了适用于稳定供电电压的无功电压控制曲线。在此基础上,论述了应用插值公式的静止无功补偿计算机控制方法。该方法应用简便,具有较好的动静态特性。  相似文献   
2.
本文根据高压电压互感器现场运行的调查材料,用概率统计的方法求出其寿命函数,并估计其平均故障率,为高压电压互感器的可靠性管理提供依据和参考。  相似文献   
3.
对黄斑星天牛虫害木(毛白杨)施以高压电击的实验结果表明,高压电击法对杀灭黄斑星天牛1~3龄幼虫效果明晃,死亡率达70%~80%;各龄幼虫停止取食率80%~90%.高压电击法在防治木材害虫、树木蛀干害虫及木材检疫上具有广阔的开发应用前景.  相似文献   
4.
为了提高动态增容的安全性,有必要对输电线路弧垂进行实时监测,为此需构建导线的弧垂监测系统。通过建立导线倾角—弧垂的数学模型,分析弧垂计算过程中误差产生的原因,提出改进措施,并通过实验验证了改进措施对提高弧垂计算精度的有效性。同时设计了基于Zigbee技术与GPRS相结合的无线传输网络,具有扩展性强,功耗低的特点。构建了无线传感网络供电模块,使整个弧垂监测系统能够准确、可靠、实时地工作。  相似文献   
5.
Generator synchronization is an important and frequent operation in rural small hydropower station. In order to ensure that generator can be paralleled in the grid automatically, efficiently, and stably in the rural small hydropower station whose parallel in operation still needs to be accomplished manually. This paper described an automatic quasi-synchronizing device, based on 89C52 Single-chip Microcomputer (SCM). Its hardware includes three modules and its software is structuralized. The device structure is simple, and its reliability is high and the maintenance is easy. Besides, convenient Human Machine Interface (HMI) makes the parameter setting simple and flexible  相似文献   
6.
王宇 《湖南农机》2015,(1):52-53
文章结合中国网通近两年来内部控制项目实施的实际情况和圆满通过外部审计师审计的经验,对目前通信网络设备维护工作中存在的问题和相应带来的风险进行剖析  相似文献   
7.
在电压空间矢量脉宽调制(SVPWM)控制技术原理的基础上,提出了一种简单快速算法,该算法只有普通的四则运算,计算变得非常简单,消除了常规的空间矢量控制算法中由于三角函数和无理数的近似计算而带来的计算误差及影响计算精度和速度的缺点,使结果更加准确。因而更适合应用于基于DSP 的数字化控制。理论分析和大量的MATLAB仿真结果表明,该算法具有谐波含量低、直流电压利用率高的优点。  相似文献   
8.
This paper analyzes the structure and line current waveform of 3-phase AC voltage regulation circuit. As an application of 3-phase AC voltage regulation circuit, a high-frequency welding device's simulation model and harmonic analysis of line current are presented. Results of simulation are compared to field measurements. The two are in a good agreement, so this simulation model is correct. Two single-tuning filters and one second-order HPF are designed according to the device's harmonic condition. Simulation results of the circuit with filters indicate decrease of the harmonics in current of power supply, and the waveform is close to sinusoidal wave, which prove correctness of the solution to harmonics pollution.  相似文献   
9.
In order to improve waveform performance of light HVDC system, a lot of switches which operate in high frequency are used, which causes large switching losses and results high cost. A new Buck type voltage source converter(BVSC) is proposed. The new BVSC comprises a dual-buck converter and a three-phase inverter operating in grid frequency. Only two high frequency switches are used, which results good output waveform performance. In order to reduce the high frequency switching losses, a novel improved double-frequency Buck type voltage source converter(DBVSC) is also proposed. An additional dual-Buck converter is added to the BVSC, the added dual-Buck converter deals with the fundamental power that operates in low frequency, and BVSC only deals with harmonic power that operates in high frequency. The output waveform is enhanced and the switching losses are reduced in DBVSC, and the power rating is also increased. The DBVSC is very suitable for large power rating application. The one cycle control theory is adopted to control the proposed DBVSC with analog circuit, which is very simple. The proposed DBVSC and control method are verified by simulation.  相似文献   
10.
Widely concerns of the influence of the HVDC system on the Three Gorges power station have been shown so far. Based on the understanding of the mechanism of the non-characteristic harmonics introduced by HVDC system, the influence of interharmonics on the shaft of hydro-generator unit is studied. A MATLAB simulation model for the Three Gorges hybrid AC and DC transmission system with considering the effect of generator-unit shaft is established. Through time-domain simulation, the influence of the minor-associated component of interharmonics on the generator-unit shaft is analyzed, which arise from the asynchronous operation of the HVDC system. Also, the complex torque coefficient method in frequency-domain is used to analyze this problem. Same conclusions can be drawn from the results of timedomain and frequency-domain analyses.  相似文献   
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