Deadbeat Flux Vector Control for Dynamic Six-Step Operation of Synchronous Machines

Deadbeat Flux Vector Control for Dynamic Six-Step Operation of Synchronous Machines
复制标题

用于同步电机动态六步运行的无差拍磁通矢量控制

DOI:
10.1109/itec.2019.8790528
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发表时间:
2019
期刊:
2019 IEEE Transportation Electrification Conference and Expo (ITEC)
影响因子:
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通讯作者:
Caleb W. Secrest
Caleb W. Secrest
中科院分区:
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文献类型:
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作者:
M. Petit;B. Sarlioglu;R. Lorenz;Brent S. Gagas;Caleb W. Secrest

文献摘要

被引文献

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本文提出了一种无差拍磁通矢量调节器,用于六边形磁通轨迹的六步操作。由于在每个采样时刻直接控制定子磁链,因此在稳态和瞬态运行中都可以实现快速平稳的磁链和转矩产生。该控制技术的一个关键特点是可以在每个采样瞬间检测和纠正与理想六步通量轨迹的偏差,从而在保持六步操作的同时实现非常快的瞬态响应和良好的抗干扰性能。此外,这种方法允许在几个采样周期内进出六步。采用流量作为主要控制变量,控制律实现简单,只依赖于几个参数。此外,本文还分析了离散时间控制的限制和定子电阻灵敏度,并提出了减轻这些限制的技术。本文对该控制方法进行了仿真和实验评价,并与传统的六步电压角转矩控制方法进行了比较。
This paper proposes a deadbeat flux vector regulator to control flux along a hexagonal flux trajectory for six-step operation. Since the stator flux is directly controlled at every sampling instant, fast and smooth flux and torque generation is achieved both in steady state and transient operations. A key feature of this control technique is that deviations from the ideal six-step flux trajectory can be detected and corrected at every sample instant resulting in a very fast transient response and good disturbance rejection properties while maintaining six-step operation. Furthermore, this approach allows transitioning in and out of six-step within a few sampling periods. By using flux as the primary control variable, the control law is simple to implement and only relies on a few parameters. Moreover, this paper analyzes discrete time control limitations and stator resistance sensitivity and proposes techniques to mitigate these limitations. The paper presents simulation-based and experimental evaluation of the control approach and compares it to conventional six-step voltage angle torque control.