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Finite Set-Model Predictive Current Control of Three-Phase Voltage Source Inverter for RES (Renewable Energy Systems) Applications
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作者 Ali Almaktoof Atanda Raji Tariq Kahn 《Journal of Energy and Power Engineering》 2014年第4期749-756,共8页
This paper focuses on a combination of three-phase VSI (voltage source inverter) with a predictive current control to provide an optimized system for three-phase inverters that control the load current. A FS-MPC (f... This paper focuses on a combination of three-phase VSI (voltage source inverter) with a predictive current control to provide an optimized system for three-phase inverters that control the load current. A FS-MPC (finite set-model predictive control) strategy for a three-phase VSI for RES (renewable energy systems) applications is implemented. The renewable energy systems model is used in this paper to investigate the system performance when power is supplied to resistive-inductive load. With three different cases, the evaluation of the system is done. Firstly, the robustness of control strategy under variable DC-Link is done in terms of the THD (total harmonic distortion). Secondly, with one prediction step, the system performance is tested using different sampling time, and lastly, the dynamic response of the system with step change in the amplitude of the reference is investigated. The simulations and result analyses are carried out using Matlab/Simulink to test the effectiveness and robustness of FS-MPC for two-level VSI with AC filter for resistive-inductive load supplied by a renewable energy system. 展开更多
关键词 finite set-model predictive control three-phase voltage source inverter renewable energy system application AC filter Matlab/Simulink.
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Finite-Control-Set Model Predictive Control of Permanent Magnet Synchronous Motor Drive Systems——An Overview 被引量:14
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作者 Teng Li Xiaodong Sun +3 位作者 Gang Lei Zebin Yang Youguang Guo Jianguo Zhu 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2022年第12期2087-2105,共19页
Permanent magnet synchronous motors(PMSMs)have been widely employed in the industry. Finite-control-set model predictive control(FCS-MPC), as an advanced control scheme, has been developed and applied to improve the p... Permanent magnet synchronous motors(PMSMs)have been widely employed in the industry. Finite-control-set model predictive control(FCS-MPC), as an advanced control scheme, has been developed and applied to improve the performance and efficiency of the holistic PMSM drive systems. Based on the three elements of model predictive control, this paper provides an overview of the superiority of the FCS-MPC control scheme and its shortcomings in current applications. The problems of parameter mismatch, computational burden, and unfixed switching frequency are summarized. Moreover, other performance improvement schemes, such as the multi-vector application strategy, delay compensation scheme, and weight factor adjustment, are reviewed. Finally, future trends in this field is discussed, and several promising research topics are highlighted. 展开更多
关键词 Computational burden finite control set(FCS) model predictive control(MPC) permanent magnet synchronous motor(PMSM) robust operation switching frequency
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Finite Control Set Model Predictive Current Control of a Five-Phase PMSM with Virtual Voltage Vectors and Adaptive Control Set 被引量:9
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作者 Wusen Wang Ying Fan +1 位作者 Siyu Chen Qiushi Zhang 《CES Transactions on Electrical Machines and Systems》 2018年第1期136-141,共6页
This paper presents an improved finite control set model predictive current control(FCS-MPCC)of a five-phase permanent magnet synchronous motor(PMSM).First,to avoid including all the 32 voltage vectors provided by a t... This paper presents an improved finite control set model predictive current control(FCS-MPCC)of a five-phase permanent magnet synchronous motor(PMSM).First,to avoid including all the 32 voltage vectors provided by a two-level five-phase inverter into the control set,virtual voltage vectors are adopted.As the third current harmonics can be much reduced by virtual voltage vectors automatically,the harmonic items in the cost function of conventional FCS-MPCC are not considered.Furthermore,an adaptive control set is proposed based on voltage prediction.Best control set with proper voltage vector amplitude corresponding to different rotor speed can be achieved by this method.Consequently,current ripples can be largely reduced and the system performs much better.At last,simulations are established to verify the steady and transient performance of the proposed FCS-MPCC,and experiments based on a 2 kW five-phase motor are carried out.The results have validated the performance improvement of the proposed control strategy. 展开更多
关键词 Adaptive control set current ripple finite control set model predictive current control(FCS-MPCC) permanent magnet synchronous motor(PMSM) virtual voltage vectors
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Research on Mixed Logic Dynamic Modeling and Finite Control Set Model Predictive Control of Multi-Inverter Parallel System
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作者 Xiaojuan Lu Mengqiao Chen Qingbo Zhang 《Energy Engineering》 EI 2023年第3期649-664,共16页
Parallel connection of multiple inverters is an important means to solve the expansion,reserve and protection of distributed power generation,such as photovoltaics.In view of the shortcomings of traditional droop cont... Parallel connection of multiple inverters is an important means to solve the expansion,reserve and protection of distributed power generation,such as photovoltaics.In view of the shortcomings of traditional droop control methods such as weak anti-interference ability,low tracking accuracy of inverter output voltage and serious circulation phenomenon,a finite control set model predictive control(FCS-MPC)strategy of microgrid multiinverter parallel system based on Mixed Logical Dynamical(MLD)modeling is proposed.Firstly,the MLD modeling method is introduced logical variables,combining discrete events and continuous events to form an overall differential equation,which makes the modeling more accurate.Then a predictive controller is designed based on the model,and constraints are added to the objective function,which can not only solve the real-time changes of the control system by online optimization,but also effectively obtain a higher tracking accuracy of the inverter output voltage and lower total harmonic distortion rate(Total Harmonics Distortion,THD);and suppress the circulating current between the inverters,to obtain a good dynamic response.Finally,the simulation is carried out onMATLAB/Simulink to verify the correctness of the model and the rationality of the proposed strategy.This paper aims to provide guidance for the design and optimal control of multi-inverter parallel systems. 展开更多
关键词 Multiple inverters in parallel microgrid mixed logic dynamic model finite control set model predictive control circulation
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Research on AC Electronic Load with Energy Recovery Based on Finite Control Set Model Predictive Control
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作者 Jian Wang Jianzhong Zhu +2 位作者 Xueyu Dong Chenxi Liu Jiazheng Shen 《Energy Engineering》 EI 2023年第4期965-984,共20页
Nowadays,AC electronic loads with energy recovery are widely used in the testing of uninterruptible power supplies and power supply equipment.To tackle the problems of control difficulty,strategy complexity,and poor d... Nowadays,AC electronic loads with energy recovery are widely used in the testing of uninterruptible power supplies and power supply equipment.To tackle the problems of control difficulty,strategy complexity,and poor dynamic performance of AC electronic load with energy recovery of the conventional control strategy,a control strategy of AC electronic load with energy recovery based on Finite Control Set Model Predictive Control(FCSMPC)is developed.To further reduce the computation burden of the FCS-MPC,a simplified FCS-MPC with transforming the predicted variables and using sector to select expected state is proposed.Through simplified model and equivalent approximation analysis,the transfer function of the system is obtained,and the stability and robustness of the system are analyzed.The performance of the simplified FCS-MPC is compared with space vector control(SVPWM)and conventional FCS-MPC.The results show that the FCS-MPC method performs better dynamic response and this advantage is more obvious when simulating high power loads.The simplified FCS-MPC shows similar control performance to conventional FCS-MPC at less computation burden.The control performance of the system also shows better simulation results. 展开更多
关键词 AC electronic load energy recovery finite control set model predictive control computation burden
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Model predictive control of three-level active front-end converter with low switching frequency
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作者 YANG Li WANG Lang-zhu +1 位作者 FENG Bo WANG Hong-lin 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2018年第2期153-159,共7页
In medium voltage-high power(MV-HP)applications,the high switching frequency of power converter will result in unnecessary energy losses,which directly affect efficiency.To resolve this issue,a novel finite control se... In medium voltage-high power(MV-HP)applications,the high switching frequency of power converter will result in unnecessary energy losses,which directly affect efficiency.To resolve this issue,a novel finite control set-model predictive control(FCS-MPC)with low switching frequency for three-level neutral point clamped-active front-end converters(NPC-AFEs)is proposed.With this approach,the prediction model of three-level NPC-AFEs is established inα-βreference frame,and the control objective of low average switching frequency is introduced into a cost function.The proposed method not only achieves the desired control performance under low switching frequency,but also performs the efficient operation for the three-level NPC-AFEs.The simulation results are provided to verify the effectiveness of proposed control scheme. 展开更多
关键词 finite control set-model predictive control(FCS-MPC) three-level neutral point clamped active front-end converters(NPC-AFEs) switching frequency
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Model Predictive Control-Based Direct Torque Control for Matrix Converter-Fed Induction Motor with Reduced Torque Ripple 被引量:9
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作者 Hanbing Dan Peng Zeng +3 位作者 Wenjing Xiong Meng Wen Mei Su Marco Rivera 《CES Transactions on Electrical Machines and Systems》 CSCD 2021年第2期90-99,共10页
To reduce the torque ripple in motors resulting from the use of conventional direct torque control(DTC),a model predictive control(MPC)-based DTC strategy for a direct matrix converter-fed induction motor is proposed ... To reduce the torque ripple in motors resulting from the use of conventional direct torque control(DTC),a model predictive control(MPC)-based DTC strategy for a direct matrix converter-fed induction motor is proposed in this paper.Two new look-up tables are proposed,these are derived on the basis of the control of the electromagnetic torque and stator flux using all the feasible voltage vectors and their associated switching states.Finite control set model predictive control(FCS-MPC)has then been adopted to select the optimal switching state that minimizes the cost function related to the electromagnetic torque.Finally,the experimental results are shown to verify the reduced torque ripple performance of the proposed MPC-based DTC method. 展开更多
关键词 Direct torque control finite control set model predictive control induction motor matrix converter
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Active disturbance rejection control FCS-MPC strategy based on ESO of PMSM system 被引量:2
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作者 ZHANG Bin WEN Xue LI Kun-qi 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2018年第2期140-147,共8页
In order to improve the control performance of three-phase permanent magnet synchronous motor(PMSM)system,an active disturbance rejection finite control set-mode predictive control(FCS-MPC)strategy based on improved e... In order to improve the control performance of three-phase permanent magnet synchronous motor(PMSM)system,an active disturbance rejection finite control set-mode predictive control(FCS-MPC)strategy based on improved extended state observer(ESO)is proposed in this paper.ESO is designed based on the arc-hyperbolic sine function to obtain estimations of rotating speed and back electromotive force(EMF)term of motor speed.Active disturbance rejection control(ADRC)is applied as speed controller.The proposed FCS-MPC strategy aims to reduce the electromagnetic torque ripple and the complexity and calculation of the algorithm.Compared with the FCS-MPC strategy based on PI controller,the constructed control strategy can guarantee the reliable and stable operation of PMSM system,and has good speed tracking,anti-interference ability and robustness. 展开更多
关键词 extended state observer(ESO) auto disturbance rejection control(ADRC) finite control set-mode predictive control(FCS-MPC) permanent magnet synchronous motor(PMSM) arc-hyperbolic sine function
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Finite control set model predictive control of three-port converter for interfacing a PV-battery energy storage system to a three-phase stand-alone AC system 被引量:1
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作者 Gangashetty A.Preeti Anbalagan Karthikeyan 《Clean Energy》 EI CSCD 2024年第2期73-84,共12页
This paper proposes a multiport bidirectional non-isolated converter topology that provides advantages in terms of simultaneous multiple operations,single-stage conversion,high power density and reduced power losses d... This paper proposes a multiport bidirectional non-isolated converter topology that provides advantages in terms of simultaneous multiple operations,single-stage conversion,high power density and reduced power losses due to the lower number of switches.The proposed multiport converter uses a centralized non-linear controller known as a finite control set model predictive controller to manage the flow of power between different ports.It deals with the parallel operation of photovoltaic and battery energy storage systems for stand-alone alternating current(AC)systems.The converter connects the lower voltage battery to the photovoltaic port using a bidirectional buck/boost converter and the photovoltaic port is linked to the stand-alone AC load through a three-phase full-bridge inverter.Each leg of the three-phase converter will act as a bidirectional direct current(DC)/DC converter as well as an inverter simultaneously.Only six switches manage the power transfer between all the connected ports of photovoltaic-battery energy storage system linked to the stand-alone AC load.The proposed multiport converter is mathematically modelled and controlled by a finite control set model predictive controller.The system is validated in simulation(1-kW rating)and experimental environment(200-W rating).The hardware prototype is developed in the laboratory and the controller is implemented on the field-programmable gate array board.Two independent case studies are carried out to validate the efficacy of the system.The first scenario is for a change in solar irradiance,while the second scenario is for a change in the output load. 展开更多
关键词 multiport converter DC/AC converter DC/DC converter finite control set model predictive controller(FCSMPC) PV-BESS three-phase converter
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悬浮电容自平衡五电平逆变器模型预测并网控制策略
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作者 李萍 陈硕 +2 位作者 赵峰 李林 刘国忠 《科学技术与工程》 北大核心 2026年第5期1982-1993,共12页
针对多电平逆变器利用传统有限集模型预测(finite control set-model predictive control, FCS-MPC)并网控制存在多目标难以权衡、调制效率低,以致影响并网系统性能的问题,提出一种悬浮电容电压自平衡五电平有源中点钳位(active neutral... 针对多电平逆变器利用传统有限集模型预测(finite control set-model predictive control, FCS-MPC)并网控制存在多目标难以权衡、调制效率低,以致影响并网系统性能的问题,提出一种悬浮电容电压自平衡五电平有源中点钳位(active neutral-point clamped, ANPC)逆变器拓扑及改进的FCS-MPC控制策略。该策略通过对逆变器所有电压矢量进行预处理、分类、筛选,构建出满足不同目标的矢量池,实施控制周期内较少矢量的滚动寻优;各目标代价函数归一化处理分配各优化矢量作用时间,形成矢量序列输出,以同时满足系统多项性能需求,无需考虑目标函数间权重系数分配;所提逆变器电路拓扑具有悬浮电容电压自平衡工作模态,进一步简化了FCS-MPC算法实现。实验结果表明,改进的FCS-MPC算法能够有效实现新型五电平ANPC逆变器的并网电流跟踪控制,且母线中点电位和悬浮电容电压的平衡度较高。所提方法具有可行性和有效性,为多电平变换器模型预测提供了新的解决方案。 展开更多
关键词 五电平有源中点钳位逆变器 有限集模型预测 矢量预处理 中点电位平衡 悬浮电容电压自平衡
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永磁同步电机模型多步预测电流控制
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作者 邓志翔 徐军 +2 位作者 王军晓 邢科新 何德峰 《科技创新与应用》 2026年第1期28-31,共4页
该文针对永磁同步电机提出一种基于自适应积分扩张状态观测器(AIESO)的改进型多步有限控制集模型预测电流控制(FCS-MPCC)。在电流环中引入基于扇形的改进型多步有限控制集模型预测电流控制。通过不同的扇区划分方法减少电压矢量集的元素... 该文针对永磁同步电机提出一种基于自适应积分扩张状态观测器(AIESO)的改进型多步有限控制集模型预测电流控制(FCS-MPCC)。在电流环中引入基于扇形的改进型多步有限控制集模型预测电流控制。通过不同的扇区划分方法减少电压矢量集的元素,从而在一定程度上减轻计算负担。同时,考虑到高增益扩张状态观测器会获得更快的收敛速度,理论上跟踪精度更高,系统干扰抑制能力也会增强,但噪声抑制性能会变差,尤其在时变干扰的干扰下,稳态下的小增益会导致稳态跟踪精度变差。最后,实验结果验证所提方法的有效性。 展开更多
关键词 永磁同步电机 有限控制集模型预测电流控制 多步预测性控制 自适应积分扩张状态观测器 稳态跟踪精度
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基于有限时间扰动补偿的车辆路径跟踪模型预测控制方法
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作者 陶贤露 吴俣婷 +2 位作者 潘树国 高旺 陈宗良 《东南大学学报(自然科学版)》 北大核心 2026年第1期174-182,共9页
作为未来交通发展的重要方向,自动驾驶车辆的应用需求持续增长,但传统控制方法存在抗干扰能力弱、跟踪精度低以及稳定性不足等问题。提出了一种基于有限时间扰动补偿的车辆路径模型预测控制(MPC)方法,以提升系统的抗干扰能力和稳定性。... 作为未来交通发展的重要方向,自动驾驶车辆的应用需求持续增长,但传统控制方法存在抗干扰能力弱、跟踪精度低以及稳定性不足等问题。提出了一种基于有限时间扰动补偿的车辆路径模型预测控制(MPC)方法,以提升系统的抗干扰能力和稳定性。首先,构建了包含跟踪误差的模型预测控制多目标优化成本函数,将横向偏差加入优化框架,直接反映跟踪精度。其次,设计了有限时间扰动观测器(FDO),实现了对复杂工况下未知扰动的实时估计与动态前馈补偿。最后,证明了系统的稳定性和收敛性。结果表明:相较于其他控制方法,所提自适应控制方法具有最优控制性能,实车实验中的最大误差为0.056 m,均方根误差为0.031 m;扰动情况下,与MPC-FDO、SMC-FDO和自适应MPC-ESO控制器相比,其控制精度分别提升26.19%、54.41%和52.31%。 展开更多
关键词 自动驾驶车辆 路径跟踪 模型预测控制 有限时间扰动观测器
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基于单电阻采样的永磁同步电机有限集模型预测控制
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作者 赵悦 陈卓易 +1 位作者 沈非凡 刘骞宇 《电工技术学报》 北大核心 2026年第2期487-498,共12页
有限集模型预测控制(FCS-MPC)能够高效处理逆变器开关离散控制的问题,但和其他高性能永磁同步电机控制方法一样,FCS-MPC需要实时相电流采样。由于电流传感器增加了成本、体积,在小功率驱动系统中多采用母线电流单电阻采样的方案,在相电... 有限集模型预测控制(FCS-MPC)能够高效处理逆变器开关离散控制的问题,但和其他高性能永磁同步电机控制方法一样,FCS-MPC需要实时相电流采样。由于电流传感器增加了成本、体积,在小功率驱动系统中多采用母线电流单电阻采样的方案,在相电流重构过程中因存在重构死区而无法准确采集电流,影响控制精度。死区问题现有的对策一般针对有调制器的场合,而对FCS-MPC等无调制器离散开关控制策略无法直接应用。为解决这一问题,该文提出了一种基于单电阻采样的有限集模型预测控制算法,对无法重构相电流的开关状态,通过模型预测值来替代采样值,并提出一种连续状态惩罚机制来解决欠激励所导致的模型更新停滞问题。通过与相电流传感器采样以及传统空间矢量脉宽调制(SVPWM)单电阻采样方案进行对比实验,验证了所提方法的有效性。 展开更多
关键词 有限集模型预测控制 单电阻采样 电流采样 连续状态惩罚机制
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基于扩张控制集的双三相永磁同步电机零共模电压有限控制集模型预测电流控制
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作者 张会林 卢强 张建平 《信息与控制》 北大核心 2026年第1期52-68,99,共18页
针对双三相永磁同步电机的高共模电压问题,提出了一种基于扩张控制集和优化占空比调制的零共模电压有限控制集模型预测电流控制策略。首先,建立零共模电压矢量控制集。为了抑制谐波电流,采用虚拟电压矢量合成方法生成了6个基本虚拟矢量... 针对双三相永磁同步电机的高共模电压问题,提出了一种基于扩张控制集和优化占空比调制的零共模电压有限控制集模型预测电流控制策略。首先,建立零共模电压矢量控制集。为了抑制谐波电流,采用虚拟电压矢量合成方法生成了6个基本虚拟矢量。在此基础上,为减小基波子平面电流跟踪误差,进一步合成了6个具有新方向的虚拟电压矢量,构建出包含12个虚拟电压矢量的扩张控制集。其次,采用锯齿载波调制法,通过在开关序列两端和中间插入零电压矢量,实现固定开关频率。最后,通过与现有抑制共模电压的双三相永磁同步电机模型预测电流控制算法进行仿真对比,验证了所提算法在共模电压抑制和电流跟踪精度方面的优势。 展开更多
关键词 扩张控制集 虚拟电压矢量合成 共模电压 双三相永磁同步电机 有限控制集模型预测电流控制
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High performance decoupled active and reactive power control for three-phase grid-tied inverters using model predictive control 被引量:9
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作者 Mohamed Azab 《Protection and Control of Modern Power Systems》 2021年第1期311-329,共19页
Finite control set-model predictive control (FCS-MPC) is employed in this paper to control the operation of a three-phase grid-connected string inverter based on a direct PQ control scheme. The main objective is to ac... Finite control set-model predictive control (FCS-MPC) is employed in this paper to control the operation of a three-phase grid-connected string inverter based on a direct PQ control scheme. The main objective is to achieve high-performance decoupled control of the active and reactive powers injected to the grid from distributed energy resources (DER).The FCS-MPC scheme instantaneously searches for and applies the optimum inverter switching state that can achieve certain goals, such as minimum deviation between reference and actual power;so that both power components (P and Q) are well controlled to their reference values.In addition, an effective method to attenuate undesired cross coupling between the P and Q control loops, which occurs only during transient operation, is investigated. The proposed method is based on the variation of the weight factors of the terms of the FCS-MPC cost function, so a higher weight factor is assigned to the cost function term that is exposed to greater disturbance. Empirical formulae of optimum weight factors as functions of the reference active and reactive power signals are proposed and mathematically derived. The investigated FCS-MPC control scheme is incorporated with the LVRT function to support the grid voltage in fulfilling and accomplishing the up-to-date grid codes. The LVRT algorithm is based on a modification of the references of active and reactive powers as functions of the instantaneous grid voltage such that suitable values of P and Q are injected to the grid during voltage sag.The performance of the elaborated FCS-MPC PQ scheme is studied under various operating scenarios, including steady-state and transient conditions. Results demonstrate the validity and effectiveness of the proposed scheme with regard to the achievement of high-performance operation and quick response of grid-tied inverters during normal and fault modes. 展开更多
关键词 Model predictive control finite control set Grid-connected inverter Active power Reactive power Distributed generation Low voltage ride through PQ theory FCS-MPC LVRT
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双稳态永磁操动机构气隙磁通解耦控制技术
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作者 汤龙飞 陈明俊 栾世旭 《电工技术学报》 北大核心 2025年第8期2441-2450,2463,共11页
双稳态永磁操动机构分合闸线圈共用磁路,导致分合闸气隙磁通相互耦合,难以灵活控制永磁开关的动作特性,制约着开关的性能。针对这一问题,该文引入有限集模型预测控制,设计了双稳态永磁操作机构分合闸气隙磁通的解耦控制方法。首先,通过... 双稳态永磁操动机构分合闸线圈共用磁路,导致分合闸气隙磁通相互耦合,难以灵活控制永磁开关的动作特性,制约着开关的性能。针对这一问题,该文引入有限集模型预测控制,设计了双稳态永磁操作机构分合闸气隙磁通的解耦控制方法。首先,通过理论分析得出影响操动机构矢量磁力变化的本质参量“分合闸气隙的磁通平方差”;其次,设计磁通预测模型,对下一时刻分合闸气隙磁通进行预测;然后,将分合闸气隙磁通及机构驱动电路视作整体,构建开关状态集与代价函数;最后,在多个控制周期的滚动优化过程中,使分合闸气隙磁通快速趋近于各自参考值,实现解耦控制。通过仿真与实验,证实了该方法在显著降低双稳态永磁操作机构操作功的同时,能够有效提高机构的响应速度与控制灵活性。 展开更多
关键词 双稳态永磁操动机构 永磁开关 有限集模型预测控制 解耦控制
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开关电感准Z源逆变器无权重系数FCS-MPC策略
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作者 刘春喜 林枝伟 +1 位作者 刘志乐 徐可 《电机与控制学报》 北大核心 2025年第3期142-154,共13页
针对开关电感准Z源逆变器采用有限集模型预测控制(FCS-MPC)时目标函数权重系数设计复杂的问题,提出一种无权重系数的FCS-MPC算法,避免了繁琐的权重系数调整过程。通过伏秒平衡原理分析电感周期性充放电的机理,在直通状态时对电感电流设... 针对开关电感准Z源逆变器采用有限集模型预测控制(FCS-MPC)时目标函数权重系数设计复杂的问题,提出一种无权重系数的FCS-MPC算法,避免了繁琐的权重系数调整过程。通过伏秒平衡原理分析电感周期性充放电的机理,在直通状态时对电感电流设置一个中间值,根据中间值和预测值的比较来确定下一周期的开关状态,在非直通状态时则采用归一化思想将输出电流和电容电压的目标函数设计为基于动态变化的函数,将误差限制在[0,1]范围内,从而不需要任何权重系数,避免了权重系数的调整过程,最后通过仿真和实验对所提的方法进行验证。结果表明:所提无权重系数FCS-MPC策略与传统FCS-MPC策略相比,在无权重系数的情况下,系统的稳态性能相同,动态性能更优。 展开更多
关键词 开关电感准Z源逆变器 有限集模型预测控制 无权重系数 目标函数 伏秒平衡 归一化
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基于有限控制集模型预测控制的全直流风电系统电压稳定控制
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作者 马智 蔺红 樊艳芳 《可再生能源》 北大核心 2025年第4期534-541,共8页
为保证全直流风电系统安全并网运行,系统直流电压稳定控制至关重要。全直流风电系统直流电压稳定控制采用比例积分(PI)控制时,PI参数较多且整定繁琐复杂,在非正常运行工况下动态响应速度相对较慢,控制精度不够高。针对以上问题,文章提... 为保证全直流风电系统安全并网运行,系统直流电压稳定控制至关重要。全直流风电系统直流电压稳定控制采用比例积分(PI)控制时,PI参数较多且整定繁琐复杂,在非正常运行工况下动态响应速度相对较慢,控制精度不够高。针对以上问题,文章提出一种基于有限控制集模型预测控制(Finite Control Set-Model Predictive Control,FCS-MPC)原理对系统换流器桥臂晶体管开关状态进行控制的系统直流电压稳定控制策略。该策略结合机侧整流器及并网逆变器的电流预测模型,以换流器输出电流为控制变量构造代价函数,以代价函数为优化目标,为避免计算时延导致的控制延时,引入延时补偿提高控制准确度,并引入权重系数实现多目标优化,通过遍历计算产生最优开关组合信号触发换流器。在Matlab/Simulink中建立全直流风电系统的仿真模型,在不同工况下,对所提策略与传统PI控制进行对比仿真分析,仿真结果有效验证了所提控制策略的静态性能及动态性能。 展开更多
关键词 全直流风电系统 有限控制集模型预测控制 电压稳定控制 换流器 风电并网
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基于数据驱动的并网逆变器无模型预测电流控制
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作者 杨金东 张锡然 +1 位作者 杨泽宇 荣飞 《电力工程技术》 北大核心 2025年第4期197-206,共10页
传统模型预测电流控制因其响应迅速和多目标优化优势,在并网逆变器控制领域得到广泛研究。文中针对传统模型预测电流控制中因参数失配导致控制性能下降的问题,提出一种基于数据驱动的无模型预测电流控制策略。首先,采用加权平均电流方... 传统模型预测电流控制因其响应迅速和多目标优化优势,在并网逆变器控制领域得到广泛研究。文中针对传统模型预测电流控制中因参数失配导致控制性能下降的问题,提出一种基于数据驱动的无模型预测电流控制策略。首先,采用加权平均电流方法对三阶LCL型滤波器系统进行降阶处理,以抑制LCL谐振频率引起的振荡;然后,利用超局部模型简化传统预测电流模型,并通过设计线性扩张状态观测器对系统扰动进行估计和补偿,从而提高电流预测精度;最后,基于系统运行数据,应用递归最小二乘法在线更新系统模型,降低控制系统对参数的依赖。仿真与硬件在环实验结果证明,相较于传统模型预测电流控制,所提出的控制策略在参数失配情况下具有更强的鲁棒性且稳态性能更优。 展开更多
关键词 有限集模型预测控制 无模型控制 数据驱动 超局部模型 递归最小二乘法 参数失配
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基于多层感知机神经网络永磁同步电机模型预测电流控制建模仿真
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作者 肖威 王崇武 江明奕 《西北工业大学学报》 北大核心 2025年第6期1183-1191,共9页
永磁同步电机(PMSM)的传统有限控制集模型预测电流控制(FCS-MPCC)方法中,由于计算延时和硬件寄存器更新机制引入的周期性延迟,控制指令滞后于实际电机状态,削弱了动态响应和控制稳定性。为解决这一问题,引入两步有限集模型预测电流控制(... 永磁同步电机(PMSM)的传统有限控制集模型预测电流控制(FCS-MPCC)方法中,由于计算延时和硬件寄存器更新机制引入的周期性延迟,控制指令滞后于实际电机状态,削弱了动态响应和控制稳定性。为解决这一问题,引入两步有限集模型预测电流控制(T-FCS-MPCC),通过同时预测两步电流状态,在上一周期生成当前时刻的控制指令,从而有效降低控制延时的影响,并提升预测精度。然而,T-FCS-MPCC虽然改善了控制性能,但更复杂的计算逻辑增加了计算负担,降低了其实时性。为此,提出基于多层感知机(MLP)神经网络的方法,以数据驱动方式代替传统模型预测控制策略。MLP神经网络通过学习T-FCS-MPCC的优化规则,能够较好地复现其控制性能,且不需要在线控制计算。仿真研究表明,该方法在二次负载干扰下表现出良好的鲁棒性,进一步验证了其在电机控制中的应用潜力。 展开更多
关键词 PMSM FCS-MPCC T-FCS-MPCC 多层感知机神经网络控制 建模仿真
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