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A Novel Fourier Series Simulation Tool for Pulsewidth Modulation (PWM) in Pulsed Power Systems

机译:脉冲电力系统脉冲脉冲调制(PWM)的新型傅里叶系列仿真工具

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PWM is an efficient power transfer mechanism in switch mode power supplies (PSU) and in speed and torque control of electric motors. Power dispatch is effected by PWM regulators in PSUs while variable voltage and frequency control of motors is achieved with sinusoidal reference PWM inverter amplifiers. Hence this pulse strategy can be used in power supply control of magnetic field currents for improved tokamak plasma confinement. Wide bandwidth current control is achieved in motor drives by natural sampled PWM because of its inherent simplicity and ease of implementation using analog comparator circuitry. For this reason a tractable mathematical model of the natural sampled PWM process is required for accurate simulation of such devices before hardware construction for performance related prediction and evaluation of plasma confinement control. In this paper a novel description of PWM is presented using a modulated Fourier series (MFS) for modelling, spectral analysis and rapid PWM inverter simulation in pulsed power applications. The MFS time function consists of a sum of sinusoidal carrier basis functions with time dependent amplitudes incorporating the modulated pulsewidth determined by the control current reference signals. Arbitrary non periodic signals are easily accommodated for rapid device simulation and performance evaluation. The MFS eliminates the need for accurate pulse edge transition searches during PWM inverter simulation because of the analytical expression for the time dependent modulated amplitudes, which contain the encoded signal information.
机译:PWM是开关模式电源(PSU)的有效电力传输机制,以及电动机的速度和扭矩控制。功率调度由PWM调节器在PWM稳压器中实现,而MOSIOPER参考PWM逆变器放大器实现了电动机的可变电压和频率控制。因此,该脉冲策略可用于磁场电流的电源控制,以改善Tokamak等离子体限制。通过自然采样PWM在电机驱动器中实现宽带电流控制,因为它具有模拟比较器电路的固有简单性和易于实现。因此,需要一种自然采样PWM工艺的经过传播的数学模型,以便在硬件结构之前精确模拟这种装置,以进行性能相关预测和等离子体监禁控制的评估。本文使用调制的傅里叶系列(MFS)来提出PWM的新颖描述,用于在脉冲功率应用中进行建模,光谱分析和快速PWM逆变器仿真。 MFS时间函数由正弦载波基函数的总和组成,时间依赖性幅度包含由控制电流参考信号确定的调制脉冲宽度。可以容易地容纳任意非周期性信号,以便快速设备仿真和性能评估。由于时间相关调制幅度的分析表达,MFS在PWM逆变器仿真期间消除了对PWM逆变器仿真的准确脉冲边缘转换搜索的需要。

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