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首页> 外文期刊>International journal of electrical power and energy systems >Adaptive critic design-based reinforcement learning approach in controlling virtual inertia-based grid-connected inverters
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Adaptive critic design-based reinforcement learning approach in controlling virtual inertia-based grid-connected inverters

机译:基于自适应批评设计的加强学习方法控制虚拟惯性基网格连接逆变器

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In this paper, an adaptive critic design (ACD) approach is proposed to control the phase and voltage of a grid-connected virtual synchronous generator (VSG). The penetration of fast responding inertia-less power converters significantly affect the stability of the power system, especially weak systems such as micro grids. The concept of virtual inertia addresses this concern by virtually emulating the behavior of a synchronous generator. However, the conventional VSG is designed based on two conditions: (i) fixed operating point and (ii) inductive grid connections. The performance of VSGs in low-voltage semi-resistive microgrids is far from optimal. To overcome the aforementioned concerns, a heuristic dynamic programing (HDP) approach is proposed to optimally control grid-connected VSGs. The neural-network-based inherence of the HDP enables the proposed technique to adapt to any impedance angle. The HDP controller includes two subnetworks: (i) the action network that controls the system optimally and (ii) the critic network, which evaluates the effectiveness of the action network. The simulation and experimental results are provided to evaluate the effectiveness of the proposed technique. As shown, the HDP-based approach illustrates a better performance in comparison with the conventional PI-based VSG in various operating conditions.
机译:本文提出了一种自适应批评设计(ACD)方法来控制网格连接的虚拟同步发电机(VSG)的相位和电压。快速响应惯性电源转换器的渗透性显着影响电力系统的稳定性,尤其是微网等弱系统。虚拟惯性的概念通过实际上模拟同步发电机的行为来解决这一问题。然而,传统的VSG基于两个条件设计:(i)固定操作点和(ii)电感电网连接。低压半电阻微电网中VSG的性能远非最佳。为了克服上述问题,提出了一种启发式动态编程(HDP)方法,以最佳地控制网格连接的VSG。基于神经网络的HDP的固有使得提出的技术能够适应任何阻抗角度。 HDP控制器包括两个子网:(i)操作网络最佳地控制系统和(ii)批评网络,该批评网络评估动作网络的有效性。提供了模拟和实验结果来评估所提出的技术的有效性。如图所示,基于HDP的方法说明了与各种操作条件中的传统PI基VSG相比的更好的性能。

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