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电动汽车驱动
★ 5.0
自适应粒度指数积分算法用于电力电子变换器系统的高效仿真
Adaptive-Grained Exponential Integrator Algorithm for Efficient Simulation of Power Converter Systems
| 作者 | Jared Paull · Carl Knickle · Nicole Lofroth · Liwei Wang · Wei Li |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年2月 |
| 技术分类 | 电动汽车驱动 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电磁暂态仿真 自适应粒度指数积分器算法 电力电子网络 仿真效率 硬件实验验证 |
语言:
中文摘要
电磁暂态(EMT)仿真在复杂电力电子变换器系统的设计与验证中日益重要。本文提出一种自适应粒度指数积分(AGEI)算法,通过预计算离散化步长以降低内存开销,并在开关事件间执行序贯中间积分以加速暂态过程仿真。该算法采用变步长高阶积分策略,在仿真速度与计算开销之间取得平衡,并根据误差阈值动态调整激励函数项数。AGEI算法具有L稳定性,可灵活适用于刚性和非刚性电路系统,兼容多种变换器拓扑与参数。实验验证了其精度,仿真案例表明其较Simulink和PLECS分别实现8倍和3倍以上的速度提升,尤其在仅含直流源或刚性电路的变换器中优势更显著。
English Abstract
Electromagnetic transient (EMT) simulation is increasingly important for complex power electronic converter system design and validation. This paper proposes an adaptive-grained exponential integrator (AGEI) algorithm designed to efficiently simulate power electronic networks. The AGEI algorithm relies on precomputation of carefully-chosen discretization steps to reduce memory burden. It then performs sequential intermediate integrations between discrete switching events to accelerate transient simulation. The variable time-step, high-order integration algorithm finds a balance between simulation run-time and computational overhead. The AGEI algorithm varies the number of the forcing function terms to meet desirable error thresholds. The proposed algorithm is L-stable and can be flexibly applied to stiff and non-stiff circuit systems, rendering it suitable for a wide arrange of power converter topologies and parameters. A hardware experimental study validates the AGEI algorithm's accuracy while simulation case studies demonstrate the AGEI algorithm significantly improves numerical efficiency. It is shown in the typical converter case studies that the proposed algorithm enables more than 8-fold and 3-fold simulation speedup compared to popular simulation tools, i.e., Simulink and PLECS, respectively. The numerical efficiency gains of the proposed algorithm become more apparent for power converter circuits with only-DC input sources or stiff circuit systems.
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SunView 深度解读
该自适应粒度指数积分算法对阳光电源电力电子系统开发具有重要价值。在**ST储能变流器**和**SG光伏逆变器**的设计验证阶段,AGEI算法可将EMT仿真速度提升3-8倍,显著缩短三电平/多电平拓扑的开发周期。对于**车载OBC**和**电机驱动器**等含刚性电路的产品,该算法的L稳定性和变步长策略能高效处理宽时间尺度问题,加速控制算法(如MPPT、VSG)的联合仿真验证。在**PowerTitan储能系统**等大规模并联拓扑设计中,其低内存开销特性可支持更复杂的系统级仿真。建议将该算法集成到内部仿真工具链,提升SiC/GaN新器件应用的快速迭代能力。