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Implementation Strategy for Resource Optimization of FPGA-Based Adaptive Finite Control Set-MPC Using XSG for a VSI System

机译:基于FPGA的自适应有限控制SET-MPC对VSI系统的资源优化的实现策略

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Finite control set-model predictive control (FCS-MPC) for the power electronic systems has been implemented using the field-programmable gate array (FPGA), considering an alternative solution to handle the computational burden of the control algorithm. However, FPGA resource utilization is a concern for optimum design and development of the FCS-MPC. This article presents analytical approach-based implementation strategies using the Xilinx system generator (XSG), considering the real-time operation of the FCS-MPC for a three-phase voltage source inverter (VSI). Moreover, an adaptive prediction model is proposed to adapt to the change in the load current. The percentage total harmonic distortion (THD), dynamic response, and steady-state error are evaluated for system-performance analysis. The implementation strategies are compared based on FPGA resource utilization for the FCS-MPC in the stationary alpha beta- and rotating dq-frames considering the fixed, approximated, and adaptive values of a coefficient used for current prediction. The lookup tables (LUTs), flip-flops, and digital signal processor (DSP) slices have been opted as the utilization indices of the FPGA resources for comparative analysis. The optimum design-based controller model is used for FPGA-based experimental system implementation. The simulation and experimental results are used for the performance evaluation of the FCS-MPC in both alpha beta- and dq -frames. Moreover, change in the switching-state constraint is included in the cost function and controller performance is evaluated corresponding to the weighting factor for the approximated and adaptive coefficient values.
机译:考虑到处理控制算法的计算负担的替代解决方案,已经使用现场可编程门阵列(FPGA)来实现用于电力电子系统的有限控制集模型预测控制(FCS-MPC)。然而,FPGA资源利用是FCS-MPC的最佳设计和开发的关注。本文介绍了使用Xilinx系统发生器(XSG)的分析方法的实施策略,考虑到三相电压源逆变器(VSI)的FCS-MPC的实时操作。此外,提出了一种自适应预测模型以适应负载电流的变化。评估系统性能分析的百分比总谐波失真(THD),动态响应和稳态误差。基于考虑用于电流预测的系数的固定的,近似和自适应值,基于静止α-BETA-和旋转DQ帧中FCS-MPC的FCS-MPC的FCS资源利用率进行比较。查找表(LUTS),触发器和数字信号处理器(DSP)切片已作为FPGA资源的利用指标作为比较分析。基于最佳设计的控制器模型用于基于FPGA的实验系统实现。模拟和实验结果用于Alpha Beta和DQ -Frames中FCS-MPC的性能评估。此外,切换状态约束的变化包括在成本函数中,并且对应于近似和自适应系数值的加权因子评估控制器性能。

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