首页> 外文会议>Annual Conference of the IEEE Industrial Electronics Society >Dynamic performance of a back-to-back converter under grid disturbances with a classical DC-bus voltage control loop v.s. a DC-bus voltage control loop with Ni-Cd and Ion-Li batteries
【24h】

Dynamic performance of a back-to-back converter under grid disturbances with a classical DC-bus voltage control loop v.s. a DC-bus voltage control loop with Ni-Cd and Ion-Li batteries

机译:具有经典DC总线电压控制回路的电网干扰下背靠背转换器的动态性能带有镍镉和锂离子电池的直流总线电压控制回路

获取原文

摘要

The aim of this paper is to present a comparative study between the dynamic response of two back-to-back converter topologies, using grid-connected Voltage Source Converters (VSC's). The first topology consists on a back-to-back converter where the DC-bus voltage is controlled by means of a classical internal DC voltage control loop. In the second topology, the DC-bus voltage is controlled by a bi-directional boost-buck DC/DC converter connected to a battery stack. In this paper both, Ni-Cd and Ion-Li battery technologies were studied. Since both topologies have a linear plant we can apply Field Oriented Control (FOC) to control both, real and reactive power exchanged with the electrical grids, as well as the DC-bus voltage. The back-to-back converter with internal DC-bus control voltage is a very well known topology which allows drive variable speed electrical machines, control electrical machines connected to the grid and decoupled reactive power flows of two different electrical grids. On the other hand, the back-to-back converter with a bi-directional boost-buck DC/DC converter connected to batteries is a more recent topology which allows decuple both, real and reactive power flows when connected to two different electrical grids. The comparison between both topologies and control methods is verified through time simulations in the discrete domain under several grid disturbances as real and reactive power steps and voltage dips. The final goal of this article is to be able to apply hot-swapping control to connect or disconnect batteries according to their State of Charge (SOC).
机译:本文的目的是通过使用并网电压源转换器(VSC),对两种背对背转换器拓扑的动态响应进行比较研究。第一种拓扑结构是一个背靠背的转换器,在该转换器中,DC总线电压通过经典的内部DC电压控制回路进行控制。在第二种拓扑中,DC总线电压由连接到电池组的双向升压/降压DC / DC转换器控制。在本文中,都对镍镉电池和锂离子电池技术进行了研究。由于这两种拓扑都具有线性设备,因此我们可以应用磁场定向控制(FOC)来控制与电网交换的有功功率和无功功率以及DC总线电压。具有内部DC总线控制电压的背靠背转换器是一种众所周知的拓扑,它允许驱动变速电机,连接到电网的控制电机以及两个不同电网的无功功率流解耦。另一方面,背对背转换器具有连接到电池的双向升压/降压DC / DC转换器,这是一种较新的拓扑,当连接到两个不同的电网时,允许有功和无功功率流都减少。拓扑和控制方法之间的比较通过离散域中的时间仿真在有功和无功功率阶跃和电压骤降的几种电网干扰下进行了验证。本文的最终目标是能够根据电池的充电状态(SOC)应用热插拔控制来连接或断开电池。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号