共查询到20条相似文献,搜索用时 281 毫秒
1.
动态电压调节器串联补偿电压研究 总被引:7,自引:2,他引:5
动态电能质量问题正在给飞速发展的信息技术时代带来巨大的危害。动态电压调节器(以下简称DVR)是解决动态电压问题的有效手段。对这类装置中能量流动和补偿电压控制问题进行了分析。提出了可以补偿电压浪涌和保证最小能量补偿的电压补偿轨迹。并且分析了在考虑补偿装置内阻抗情况下的电压补偿策略。 相似文献
2.
动态无功补偿装置在220kV变电所的应用 总被引:2,自引:0,他引:2
介绍了动态无功补偿装置的性能、运行方式及控制策略,采用新型动态无功补偿装置进行动态无功补偿,能有效稳定系统电压,改善不平衡及谐波引起的电能质量,提高电网电压合格率,从而提高系统安全性. 相似文献
3.
如果配电网中的无功功率不足,则将会影响电网电压合格率,因此需要应用无功补偿技术改善配电网运行工况。本文分析了无功动态补偿技术的优势,包括有效维持电压平衡等;并结合实例探讨了无功动态补偿技术在配电网中的应用情况。 相似文献
4.
5.
6.
为实现动态电压恢复器(DVR)对暂降电压幅值和相位补偿的同时,减少能量的损耗,延长补偿时间,最大程度减小暂降电压对负载的影响,文中提出了一种综合能量最优补偿策略。通过分析综合能量最优补偿过程,得出补偿相量图和解析式,并讨论了该策略的极限补偿问题。分析补偿电压幅值、输出有功与相关物理量之间的数学关系式和关联曲线,得出最优补偿条件。通过MATLAB/Simulink进行仿真实验,分析了不同程度的电压暂降补偿效果,仿真结果验证了所提补偿策略的有效性。 相似文献
7.
8.
为了满足就地随机补偿的要求,提出一种自关断器件控制的电容器(SDCC)无功动态补偿装置。对调整电容器电压的无功功率动态补偿电路原理进行了论述,采用反向阻断器件组成开关电路,由开关电路调整补偿电容器的充放电电压,实现用电容器对负载无功功率补偿的动态控制。用实例对调整电容器电压无功功率动态补偿电路中的工作原理、工作过程和主要器件参数的选择进行了分析和阐述。经样机验证SDCC无功动态补偿装置可满足就地随机补偿的要求。 相似文献
9.
10.
11.
动态电压恢复器电压补偿策略的研究 总被引:17,自引:4,他引:13
动态电压恢复器(DVR)在保证敏感负荷电压质量的同时与系统间存在能量交换,为了减少DVR的有功输出,提高DVR的补偿极限,文中针对不平衡电压跌落的特点,在考虑不同性质负荷对电压幅值和相移有一定容许范围的基础上,提出了新的最小能量补偿策略。通过对不对称三相电压相量的旋转和对称分量法来确定DVR的最优输出电压。仿真结果证明了该方法比其他电压控制方法更能有效地减少DVR的有功输出,加大了DVR的补偿范围。 相似文献
12.
13.
14.
15.
16.
The dynamic voltage restorer (DVR) is considered as the most effective and economic solution for voltage disturbances. This paper presents an energy optimized control scheme for a transformerless DVR. The DVR structure is based on a cascaded H-bridge multilevel inverter topology to eliminate the need of insertion transformers. The proposed control algorithm maintains a balanced load-side voltage even during the compensation of unbalanced disturbances with a minimum active power injection. Moreover, the proposed scheme maximizes the ride-though capability of the DVR during voltage sags. This feature is verified by using capacitors instead of dc sources as energy storage elements for the DVR. Furthermore, the proposed minimum energy scheme prevents the rise in the dc-side voltage of the inverter when compensating voltage swells. The performance of the proposed DVR system is evaluated for compensating different types of voltage disturbances. The results validate the robustness and the accuracy of the proposed system. 相似文献
17.
基于超导储能的瞬时电压跌落补偿 总被引:7,自引:2,他引:5
超导储能(SMES)是解决瞬时电压跌落问题的一种很有前途的方案。由于SMES自身的特点,基于SMES的瞬时电压跌落补偿装置在主电路结构、参数设计、补偿原理和控制方法上均不同于传统的动态电压恢复器。为了保护一个110kVA的重要负载不受瞬时电压跌落的危害,一套基于SMES的瞬时电压跌落补偿系统正在开发中。该系统主要由0.3MJ超导线圈、200kVA绝缘栅双极晶体管(IGBT)电流型变流器和2.5mH移相电抗器组成。文中通过理论分析和仿真计算介绍了系统主电路的工作原理及参数设计。为实现瞬时控制和获得更高的响应速度,采用了直接电流脉宽调制(PWM)开关策略。开环仿真结果表明,系统可以满足瞬时电压跌落的补偿要求。 相似文献
18.
19.
The continuity of supply and quality of power are the two main significant aspects of today’s power delivery system. The Dynamic Voltage Restorer (DVR) is a series connected custom power device which improves the quality of power delivered to the consumers. This paper deals with the effectual exploitation of DVR for interconnecting the proton exchange membrane fuel cell (PEMFC) stack to the grid based on optimized proportional integral (PI) and fuzzy logic (FL) Controller. The real coded Genetic algorithm (GA) is used to optimize the PI controller parameters. The PEMFC operated boost converter is used to boost up the fuel cell output voltage to balance the DC side necessities of the voltage source converter (VSC). The proposed DVR provides balanced and unbalanced voltage sag/swell compensation, harmonic reduction as well as an active power injection to the grid. The designed method also protects the sensitive loads from source side power quality disturbances including short term interruption. In addition, the harmonic compensation performance of the proposed work is validated by comparing with the results of the H∞ controller based DVR under medium level voltage condition. The simulation results from MATLAB/SIMULINK are discussed to prove the effectiveness of the planned method. 相似文献