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Braking Torque Control Strategy for Brushless DC Motor With a Noninductive Hybrid Energy Storage Topology

机译:无刷直流电动机的制动扭矩控制策略,具有非遗嘱混合能量存储拓扑

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摘要

This article first presents a simple hybrid energy storage system (ESS) that consists of a battery, a supercapacitor and two mosfets, without additional inductors and other power devices. Then, according to the operation characteristics of the brushless DC motor, the energy transmission of this storage system is discussed when the motor operates in constant speed mode, acceleration mode, and braking deceleration mode, respectively. In the braking operation mode, four types of switching vectors are further designed based on the ESS. By analyzing the influence of different switching vectors on the two objectives of braking torque control and braking energy regeneration, the priority grade of each vector is determined from these two perspectives. On this base, the switching vector selection mechanism based on average grade ranking is constructed. The proposed strategy gives consideration to both smooth braking torque control and effective braking energy regeneration by adopting unified switching vectors during the whole braking process, without needing to switch control strategies according to the speed range. The feasibility of the presented method is validated by the experimental results.
机译:本文首先提出了一种简单的混合能储能系统(ESS),包括电池,超级电容器和两个MOSFET,无需额外的电感器和其他电源设备。然后,根据无刷直流电动机的操作特性,当电动机以恒定速度模式,加速度模式和制动减速模式操作时,讨论该存储系统的能量传输。在制动操作模式中,基于ESS进一步设计了四种类型的开关矢量。通过分析不同切换矢量对制动扭矩控制和制动能量再生的两个目标的影响,从这两个视角确定每个载体的优先等级。在该基础上,构建基于平均等级排名的切换矢量选择机制。所提出的策略通过在整个制动过程中采用统一的开关向量,考虑到平稳制动扭矩控制和有效制动能量再生,而不需要根据速度范围切换控制策略。通过实验结果验证了所提出的方法的可行性。

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