VIRTUAL SYNCHRONOUS GENERATOR-BASED OVERSIGHT AND PREDICTIVE MODELS FOR MARS

Migunani Migunani, Moh Muthohir, Dwi Setiawan
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Abstract

This research serves the virtual Synchronous Generator finding and oversight building of the Multi-port Autonomous Reconfigurable Solar (MARS) structure to bring backing to the alternating-curring network under various events on the network and presents a “model-based predictive control” (MBPC) oversight finding for the MARS structure to bring backing to the MARS structure alternating-curring network while the density innovation is recognized in the system. The main objective is to nominate a “model-based predictive control” leading oversight design that can bring density backing while unexpected density alteration. In this study, a comprehensive application of a virtual Synchronous Generator-based oversight innovation for the MARS structure is given. The expected oversight finding and control architecture of the MARS structure is evaluated by simulation on the “PSCAD”/EMTDC simulation platform to show performance under various operating conditions and calculated in the “Opal-RT” offline simulation model that also can be adapted to complete the certified “control-hardware -in-the- loops” (c-HIL). The dominant density backing performance is a conceivable combined improvement for each current network-unified capability transistors system. By increasing infiltration of transistors system-based stuff, passivity and immediate density feedback potentially decrease. Leading “model-based predictive control” (MBPC) finding to provide density backing to current topologies of unified “photovoltaic” (PV), battery-based “energy storage system”s” (ESS), and “high-voltage direct current” (HVDC) method named “multi-port autonomous reconfigurable solar” (MARS) is suggested. The expected oversight finding for regularly based on virtual Synchronous Generator-based oversight. Simulation of the MARS-HVDC method by the recommended oversight approach was assumed and authorized for MARS related to a “small short circuit ratio” (SCR) network in a “PSCAD”/EMTDC assumed habitat. The expected oversight finding displays superior work in the phrase of increasing rock bottom frequency and increasing constant-area frequency concerning no density oversight. The results of this research indicate that the MARS architecture by Synchronous Generator -based oversight brings exceptional heat backing by inserting higher active potential to the structure while equitable stage error compared to the Virtual Synchronous Generator - based oversight mode. The Synchronous Generator-based oversight mode is also balanced and brings better work in the phase of density rock bottom and balance-area increase. In the great feedback, the Synchronous Generator-based oversight mode is good than the Virtual Synchronous Generator-based oversight mode for each short circuit ratio set tested. MBPC-based oversight is entrenched in a virtual Synchronous Generator-based oversight algorithm. The recommended oversight innovation and control architecture of the MARS structure was calculated on the MARS structure in the “PSCAD”/EMTDC simulation environment. The simulation results show an increase in nadir frequency and steady-state frequency provided by the Multi-port Autonomous Reconfigurable Solar (MARS) structure via MBPC control. In future research, leading oversight methods are required to bring steady action down to unsteady error.
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火星的虚拟同步发电机监督和预测模型
本研究服务于多端口自治可重构太阳能(MARS)结构的虚拟同步发电机查找和监督构建,以使其在网络上发生各种事件的情况下回归到交流弯曲网络,并提出了一种“基于模型的预测控制”(MBPC) MARS结构的监督查找,以使其在系统中识别密度创新的情况下回归到MARS结构交流弯曲网络。主要目标是提名一种“基于模型的预测控制”领先的监督设计,该设计可以在意外的密度变化时提供密度支持。在本研究中,给出了一种基于虚拟同步发电机的MARS结构监督创新的综合应用。通过在“PSCAD”/EMTDC仿真平台上进行仿真,评估MARS结构的预期监督发现和控制体系结构,以显示各种操作条件下的性能,并在“Opal-RT”离线仿真模型中进行计算,该模型也可以适应完成认证的“控制硬件在环”(c-HIL)。优势密度后备性能是当前各种网络统一性能晶体管系统的一种可想象的综合改进。通过增加晶体管系统基材料的渗透,无源性和即时密度反馈可能会降低。提出了领先的“基于模型的预测控制”(MBPC)方法,为统一的“光伏”(PV)、基于电池的“储能系统”(ESS)和名为“多端口自主可重构太阳能”(MARS)的“高压直流”(HVDC)方法的当前拓扑提供密度支持。基于虚拟同步发电机的定期监督的预期监督发现。通过推荐的监督方法模拟MARS- hvdc方法,假设并授权MARS与“PSCAD”/EMTDC假设栖息地中的“小短路比”(SCR)网络相关。预期的监督结果显示,在无密度监督的情况下,增加底部频率和增加等面积频率阶段工作较好。研究结果表明,与基于虚拟同步发电机的监督模式相比,基于同步发电机的监督模式通过在结构中插入更高的有功电位而获得了出色的热背。基于同步发电机的监督模式也是平衡的,在密度最低点和平衡面积增加阶段工作效果更好。在大反馈情况下,对所测试的各短路比集,基于同步发电机的监督模式优于基于虚拟同步发电机的监督模式。基于mbpc的监督植根于基于虚拟同步生成器的监督算法中。在“PSCAD”/EMTDC仿真环境下,在MARS结构上计算了推荐的MARS结构的监督创新和控制体系结构。仿真结果表明,通过MBPC控制,多端口自主可重构太阳能(MARS)结构提供的最低点频率和稳态频率都有所增加。在未来的研究中,需要领先的监督方法将稳定作用降低到非定常误差。
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