Smart Grid Functioning of Solar Electric System Network Based on Complex Accumulation Control

E. Chaikovskaya
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Abstract

Abstract: Voltage maintenance in the distribution system takes place with the use of additional devices. The purpose of the work is to develop a Smart Grid functioning of the solar electric system network based on integrated storage control. Accumulator battery and thermoelectric accumulator as part of the solar electric system network acquire the additional status of voltage regulators in the distribution system. A comprehensive integrated system has been developed for supporting the functioning of the solar electric system network based on a prediction of changes in the battery capacity and power factor. Advanced decisions on change the capacity of the thermoelectric accumulator in redistributes the accumulated electrical energy. Changing the level of transmission of electric energy to the network make it possible to maintain voltage in the distribution system through maintaining the power factor of the network solar electric system. Continuous measurement of the voltage at the input to the hybrid inverter, the voltage at the output from the frequency converter and in the distribution system takes place. The change in the ratio of voltage at the output of the frequency converter and in the distribution system is evaluated. The peak load of the energy system is prevented, reducing the consumption of energy from the network to 14%.
基于复杂累积控制的太阳能电力系统网络的智能电网功能
摘要:配电系统的电压维护需要使用额外的设备。这项工作的目的是开发一种基于集成存储控制的太阳能电力系统网络智能电网功能。蓄电池和热电蓄能器作为太阳能电力系统网络的一部分,在配电系统中具有电压调节器的附加功能。基于对蓄电池容量和功率因数变化的预测,已开发出一套支持太阳能电力系统网络运行的综合集成系统。先进的热电蓄能器容量变化决策可重新分配积累的电能。改变向网络传输电能的水平,可以通过保持太阳能电力系统网络的功率因数来维持配电系统的电压。对混合逆变器输入端电压、变频器输出端电压和配电系统电压进行连续测量。评估变频器输出端和配电系统电压比率的变化。防止了能源系统的峰值负荷,将电网的能耗降至 14%。
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