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An adaptive time step control algorithm for nonlinear time domain envelope transient

机译:非线性时域包络瞬态的自适应时步控制算法

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In this paper we propose a new adaptive time step control algorithm for the slow time dimension of time domain envelope transient (TD-ENV) simulation. The algorithm uses two models: the first is the set of differential-algebraic equations that represent the circuit. The second is a 'coarse' model that is cheap to evaluate. The optimum time step is estimated from an error term obtained from the coarse model. The accurate model is then solved using the near optimum time step. The acceptable error for the time step estimation is adapted according to the dynamics of the system. We describe the time step control algorithm and present a case study of the transient analysis of a rectifier circuit powered by a high-frequency pulse train with a slowly varying pulse duty cycle. The simulations show that few time steps are rejected compared with a traditional time step control algorithm.
机译:在本文中,我们针对时域包络瞬变(TD-ENV)模拟的慢时维提出了一种新的自适应时间步控制算法。该算法使用两个模型:第一个是代表电路的一组微分代数方程。第二个是评估成本低的“粗略”模型。根据从粗略模型获得的误差项估计最佳时间步长。然后使用接近最佳的时间步长来求解准确的模型。时间步长估计的可接受误差会根据系统的动态情况进行调整。我们描述了时间步长控制算法,并给出了一个由高频脉冲序列供电的,具有缓慢变化的脉冲占空比的整流器电路的瞬态分析的案例研究。仿真表明,与传统的时间步长控制算法相比,几乎没有时间步长被拒绝。

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