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Design of DC Micro-grid Based on Bus Voltage Grading Control

机译:基于母线电压分级控制的直流微电网设计

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Due to the intermittent nature of the distributed power supply in the microgrid and the indeterminate output power, real-time changes in system load can have an impact on the DC bus voltage. In order to solve these problems better, the DC microgrid bus voltage grading control strategy is designed. First, the system structure of the DC microgrid is constructed. In this paper, the bus voltage of the DC microgrid is hierarchically controlled and divided into four levels according to the bus voltage. According to the voltage level of each module and different working modes, the system is divided into five working states to ensure the DC bus voltage. Maintain system stability by reducing ripple. This paper determines the operating state of the energy storage module by detecting and comparing the load demand power and photovoltaic power generation, ie using the battery and the super capacitor as energy relaxation. The system ends to ensure the stability of the DC bus voltage. Finally, the simulation model based on MATLAB is used to verify the effectiveness of the control strategy. The simulation results show the effectiveness and correctness of the control strategy.
机译:由于微电网中分布式电源的间歇性和不确定的输出功率,系统负载的实时变化可能会对直流母线电压产生影响。为了更好地解决这些问题,设计了直流微电网母线电压分级控制策略。首先,构建直流微电网的系统结构。本文对直流微电网的母线电压进行分级控制,并根据母线电压分为四个等级。根据每个模块的电压水平和不同的工作模式,系统分为五个工作状态以确保直流母线电压。通过减少纹波来保持系统稳定性。本文通过检测和比较负载需求功率和光伏发电来确定储能模块的工作状态,即使用电池和超级电容器作为能量松弛。系统结束以确保直流母线电压的稳定性。最后,基于MATLAB的仿真模型被用于验证控制策略的有效性。仿真结果表明了该控制策略的有效性和正确性。

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