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A Dead-Time Compensation Method for Parabolic Current Control With Improved Current Tracking and Enhanced Stability Range

机译:具有改进的电流跟踪和增强的稳定范围的抛物线电流控制的死区补偿方法

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Hysteresis current control is an attractive nonlinear current-control method for voltage source inverters when a fast system response is required. A well-known disadvantage of hysteresis current control is that the system has to operate over a wide switching frequency range. This causes an increase in the switching losses of the system and increases the difficulty in designing the output filter. The recently proposed parabolic current control solves this problem by employing a pair of parabolic carriers as the control band. Through the use of parabolic current control, constant switching frequency can be achieved. In the implementation of parabolic current control, dead time is employed to prevent shoot through of the inverter leg. The employment of dead time impacts the current-tracking precision and the stability range of the parabolic current-control method. Another side effect of using dead time is that the switching frequency deviates from the desired value. In this paper, the effects of dead time on parabolic current control are analyzed, and a compensation method is proposed for voltage source inverters that use parabolic current control. Using the output current direction of the voltage source inverter, a new pair of improved parabolic carriers is derived. As a result, the current error can be well controlled and the effects of dead time can be eliminated. The improvement in the current tracking of the system comes with an added benefit where the duty cycle range is extended. The effectiveness of the proposed dead-time compensation method is experimentally verified by the use of a full-bridge voltage source inverter.
机译:当需要快速的系统响应时,磁滞电流控制是用于电压源逆变器的一种有吸引力的非线性电流控制方法。磁滞电流控制的一个众所周知的缺点是系统必须在很宽的开关频率范围内工作。这导致系统的开关损耗增加,并且增加了设计输出滤波器的难度。最近提出的抛物线电流控制通过采用一对抛物线载波作为控制带解决了这个问题。通过使用抛物线电流控制,可以实现恒定的开关频率。在实施抛物线电流控制时,采用空载时间来防止逆变器桥臂直通。死区时间的使用会影响抛物线电流控制方法的电流跟踪精度和稳定性范围。使用停滞时间的另一个副作用是开关频率偏离了期望值。本文分析了空载时间对抛物线电流控制的影响,提出了一种采用抛物线电流控制的电压源逆变器的补偿方法。利用电压源逆变器的输出电流方向,可以得出一对新的改进的抛物线形载波。结果,可以很好地控制电流误差,并且可以消除停滞时间的影响。扩展占空比范围的同时,系统电流跟踪的改进也带来了额外的好处。通过使用全桥电压源逆变器,实验验证了所提出的空载时间补偿方法的有效性。

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