智能电网系统的电网电压稳定

Saurav Das, Farzam Aidelkhani, S. Mustak, A. Baki, M. Razzak
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引用次数: 4

摘要

随着电网的日益完善和规模的日益扩大,必须开发和设计新的系统来控制和消除新出现的问题。针对电网中经常出现的电压波动,本文提出了一种新的稳定系统。例如,当大量分布式发电资源并网时,当负荷波动较快时。本文提出了一种解决电网欠压问题的系统。每当光伏电池、微型涡轮机等分布式发电机组接入电网时,电网电压就会超过可接受的上限。在过电压情况下,所提出的系统将被停用,储能系统将从电网获得电力;因此,电网电压将降低到可接受的水平。本文还介绍了用于该系统的并网逆变器(GTI)。该系统由连续监测电网电压波动的监测机构组成。当电网电压下降到一定水平时,控制单元向升压变换器单元发出命令,使储能系统的电压水平上升。为了保持电网电压恒定,无论负载波动多少,增强的直流电将通过GTI馈送到电网中。该系统已通过PSIM仿真软件进行了验证。通过Proteus仿真软件对系统的电子控制部分进行了设计和演示。
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Grid voltage stabilization for smart grid systems
As the power grid is improving and increasing in size day by day, new systems must be developed and designed to control and negate the newly arising problems. This paper proposes a new system to stabilize the voltage fluctuations in grid which often occur in some situations. For example, when a large number of distributed generating resources are connected to the grid and when the load fluctuates rapidly. A system has been proposed here as a solution to the problem of under voltage problems in grid. Whenever distributed generating units such as photovoltaic cells and micro turbines are connected to the grid, the grid voltage increases above the upper acceptable level. During the over voltage situations, the proposed system will be deactivated and the energy storage system will get power from the grid; as a result, the grid-voltage will decrease to an acceptable level. The paper also describes a Grid Tie Inverter (GTI) for the system. The system consists of a monitoring mechanism which continuously monitors the grid-voltage fluctuations. If the grid-voltage falls down to a certain level the control unit will send a command to boost converter unit to boost up the voltage level of the energy storage system. In order to keep the grid-voltage constant no matter how much the load fluctuates, the boosted DC power will then be fed into the grid by using the GTI. The proposed system has been demonstrated through PSIM simulation software. The electronic controlling part of the system has been designed and demonstrated through the Proteus simulation software.
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