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Robust predictive dual-loop control method based on Lyapunov function stability and energy equilibrium though double-core processors for active power filter

机译:基于Lyapunov函数稳定性和能量平衡的双核有源功率滤波器鲁棒预测双环控制方法

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In this paper, a robust predictive dual-loop control method based on Lyapunov function stability and energy equilibrium for active power filter (APF) is proposed to improve the anti-interference performance and self-adaptive capability of system. The proposed control method mainly includes robust predictive current control based on Lyapunov function stability (RPCC-LFS) in the inner current loop and energy equilibrium proportional-integrator (PI) control in the outer dc-link voltage loop. The RPCC-LFS is proposed to enhance self-adaptive capability when the output filter inductors vary, speed up the dynamic response, and improve the tracking accuracy when the loads fluctuate. The energy equilibrium PI controller is proposed to maintain the dc-link voltage stable and suppress the transient impulse. The stability and dynamic response of the proposed control system are analyzed in detail, and the proper control parameters are selected. A specific hardware and software design program based on double-core processors DSP + FPGA is thoroughly given out. Finally, the comparative simulations and experiments verified the validity of the proposed method.(C) 2017 Elsevier Ltd. All rights reserved.
机译:为了提高系统的抗干扰性能和自适应能力,提出了一种基于李雅普诺夫函数稳定性和能量平衡的鲁棒预测双环控制方法。提出的控制方法主要包括内部电流回路中基于Lyapunov函数稳定性(RPCC-LFS)的鲁棒预测电流控制和外部直流环节电压回路中的能量平衡比例积分器(PI)控制。提出使用RPCC-LFS来增强输出滤波器电感变化时的自适应能力,加快动态响应,并在负载波动时提高跟踪精度。提出了能量平衡PI控制器,以保持直流链路电压稳定并抑制瞬态脉冲。详细分析了所提出控制系统的稳定性和动态响应,并选择了适当的控制参数。彻底给出了基于双核处理器DSP + FPGA的特定硬件和软件设计程序。最后,通过对比仿真和实验验证了该方法的有效性。(C)2017 Elsevier Ltd.保留所有权利。

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