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Voltage and power control for minimising converter and distribution losses in autonomous microgrids

机译:电压和功率控制,可将自主微电网中的转换器和配电损耗降至最低

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摘要

Voltage source converters (VSCs) are widely used in microgrids to interface the renewable resources with the electrical network. In autonomous microgrids with the dc distribution network, the optimal dc voltage reference for the one VSC that operates in the voltage regulator mode and the optimal reference power settings of the remaining VSCs working in the power dispatcher mode have to be pre-determined. Emulating the utility grid, these settings and control modes are commonly selected such that the dc voltage is maintained within desired margins, typically ±10% around the rated value. In this study, the objective function is minimisation of the converter and distribution line losses. All the operational modes and limits of VSCs have been taken into account. Genetic algorithm has been utilised in solving the optimisation problem. Owing to limited available power from renewables, reducing the converter and distribution system losses will enhance the survivability of the microgrid and ease the cooling requirements, resulting in a more compact system. A model of a 20-bus microgrid with the dc distribution network is employed to verify the effectiveness of the presented optimisation algorithm.
机译:电压源转换器(VSC)广泛用于微电网,以将可再生资源与电网连接。在具有直流配电网络的自治微电网中,必须预先确定在稳压器模式下运行的一个VSC的最佳直流电压参考以及在电源分配器模式下工作的其余VSC的最佳参考功率设置。在仿真公用电网时,通常会选择这些设置和控制模式,以使直流电压保持在所需的范围内,通常在额定值附近±10%。在这项研究中,目标函数是最小化转换器和配电线损耗。 VSC的所有操作模式和限制都已考虑在内。遗传算法已被用于解决优化问题。由于可再生能源的可用功率有限,减少转换器和配电系统的损耗将提高微电网的生存能力并减轻冷却要求,从而使系统更加紧凑。采用带有直流配电网的20总线微电网模型来验证所提出的优化算法的有效性。

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