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A dead-beat adaptive hysteresis current control

机译:无差拍自适应磁滞电流控制

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摘要

The paper proposes a new digital algorithm for the implementation of the fixed frequency, adaptive hysteresis current control for voltage source inverters. The key features of the new algorithm are the minimization of the analog external circuitry, the capability to automatically compensate for the inverter dead-time effects without appreciable delay and a tight synchronization of the inverter voltage pulses with an external clock. The synchronization is actually inherent in the implemented algorithm and does not require additional control loops; the stability problems affecting all the solutions proposed so far are therefore avoided and a steady switching frequency is achieved. Even though the complexity of the algorithm is compatible with many conventional microcontrollers' performance level, the implementation with a commercial DSP is considered in order to achieve ultrasonic operating frequency and to test the effectiveness of the solution in more demanding conditions.
机译:本文提出了一种新的数字算法,用于实现电压源逆变器的固定频率,自适应磁滞电流控制。新算法的关键特性是最小化模拟外部电路,自动补偿逆变器死区影响而没有明显延迟的能力以及逆变器电压脉冲与外部时钟的紧密同步。同步实际上是实现的算法中固有的,不需要其他控制回路。因此,避免了影响到目前为止提出的所有解决方案的稳定性问题,并获得了稳定的开关频率。即使算法的复杂性与许多常规微控制器的性能水平兼容,也考虑采用商用DSP来实现超声工作频率并在更苛刻的条件下测试解决方案的有效性。

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