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Optimal Energy Management Strategy and Novel Control Approach for DPGSs Under Unbalanced Grid Faults

机译:电网不平衡故障下DPGS的最优能量管理策略和新控制方法

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Recently, the use of distributed power generation systems (DPGSs) based on renewable energy resources is increasingly being pursued as a supplement and a reliable alternative to the large traditional energy sources. For it, power-electronic interface technologies and control have also emerged as the most important key elements in the area of energy management and integrating DPGSs. The specification of a power-electronic interface is subject to several requirements that are related not only to the DPGS itself but also to its interactions with the power system especially where the utility grid is subject to events that can potentially lead to large-scale disturbances or even to its collapse if it operates near its capacity without fault margin. This study deals, first, with an optimized energy management strategy and, second, with a newly-conceived control strategy called symmetrical components control algorithm (SCCA) that was proposed for four-leg three-phase grid-connected voltage source inverter (VSI) used for DPGSs with wind-solar-battery sources. A mechanism of negative and zero sequences injection based on the control of (d, q) current coordinates has been introduced. The performance of entire control system, to enhance the unbalanced fault ride-through capability of DPGSs, has been evaluated by time domain simulations with MATLAB/Simulink. Advantages of the combined active-reactive control ensuring both current and voltage controls have been achieved compared to the majority of already published strategies. The distinct features of the proposed SCCA strategy prove that it allows to meet the requirements for grid interconnection and the new stricter standards with respect to power quality, safe running, and islanding protection.
机译:近来,越来越多地寻求使用基于可再生能源的分布式发电系统(DPGS)作为大型传统能源的补充和可靠替代。为此,电力电子接口技术和控制也已成为能源管理和集成DPGS领域中最重要的关键要素。电力电子接口的规范不仅受与DPGS本身有关的几项要求,而且还与DPGS与电力系统的相互作用有关,特别是在公用电网遭受可能导致大规模干扰或如果它在没有故障余量的情况下接近其容量运行,甚至会崩溃。本研究首先针对优化的能源管理策略,其次针对新概念的控制策略,即对称分量控制算法(SCCA),该策略针对四臂三相并网电压源逆变器(VSI)提出用于带有风太阳能电池源的DPGS。引入了基于(d,q)当前坐标控制的负序和零序注入机制。通过使用MATLAB / Simulink进行时域仿真,可以评估整个控制系统的性能,以增强DPGS的不平衡故障穿越能力。与大多数已发布的策略相比,组合的有功-无功控制可确保同时实现电流和电压控制。提出的SCCA策略的独特功能证明,它可以满足电网互连的要求以及有关电能质量,安全运行和孤岛保护的新的更严格的标准。

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