鲁棒约束模型预测电压控制方案及其分类

3 Pub Date : 2024-03-02 DOI:10.46632/jeae/2/3/1
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引用次数: 0

摘要

本研究提出了一种前瞻性电力系统(PPS)、预测电流控制(PCC)、增强电压控制(EVC)、模型预测控制(MPC)、感应电机(IM)电路。由于采用了预测控制理论,在建议的 PVC 模型中,无需像传统 MP DTC 那样监控转矩和转速,而是直接调节定子电压。电压源变频器使用模型预测控制方法。对于逆变器产生的所有潜在电压矢量,该方法利用系统的离散模型预测负载值。"基于电压源变流器的高压直流(VSC-HVDC)"使用基于 "模型预测控制(MPC)"的增强型电压控制策略(EVCS)(OWFs)连接海上风电场。在拟议的 Midi 控制器 EVCS 中,所有风电场发电机 (WTG) 和风电场侧 VSC 都能有效同步,从而将电压保持在实用范围内并减少系统功率损耗。审查感应电机缺陷,包括机械和绝缘问题。总结机器故障的静态电流特征。为感应电机问题检测引入了大量有用的特征提取技术。
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Robust Constrained Model Predictive Voltage Control Scheme and its Classification
In this study, a prospective power system is suggested (PPS), predictive current control (PCC), enhanced voltage control (EVC), model predictive control (MPC), induction motor (IM) circuit. Instead of monitoring the torque and speed as in conventional MP DTC, the stator voltage is directly regulated in the suggested PVC model thanks to the predictive control theory. A voltage source inverter's use of a model predictive control approach. For all potential voltage vectors produced by the inverter, this method forecasting value of the load using a discrete model of the system. "Voltage-source converter based high voltage direct current (VSC-HVDC)" connected offshore wind farms using a "model predictive control (MPC)" based Enhanced Voltage Control Strategy (EVCS) (OWFs). All wind farm generator (WTGs) and wind farm side VSCs are effectively synchronized in the proposed Midi controller EVCS to maintain voltages within a practical range and reduce system power loss. Review of induction motor defects, including mechanical and insulating issues. The summary of static current signature of machine failures. Numerous useful feature extraction techniques have been introduced for induction motor problem detection.
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