In this article, an efficient transient electricalthermal co-simulation method based on the finite element method (FEM) and the discontinuous Galerkin time-domain (DGTD) method is developed for electrical-thermal coupling analysis of multiscale structures. Two Independent meshes are adopted by the steady electrical analysis and the transient thermal simulation to avoid redundant overhead. In order to enhance the feasibility and efficiency of solving multiscale and sophisticated structures, a local time stepping (LTS) technique coupled with an interpolation method is incorporated into the co-simulation method. Several numerical examples from simple structures to complex multiscale PDN structures are carried out to demonstrate the accuracy and efficiency of the proposed method by comparing with the COMSOL. Finally, two practical numerical examples are considered to confirm the performance of the proposed method for complex and multiscale structures.
翻译:在本条中,为分析多层结构的热-热连接而开发了一种基于有限元素法和不连续加列尔金时空域法的高效瞬时热共模拟法,通过稳定的电气分析和瞬时热模拟采用了两种独立的中间体,以避免冗余的间接费用;为了提高解决多层和复杂结构的可行性和效率,在共同模拟法中纳入了一种当地时间跨步技术,加上一种内插方法。从简单结构到复杂的多尺度PDN结构,通过比较COMSOL,进行了几个数字示例,以表明拟议方法的准确性和效率。最后,为了证实拟议的复杂和多尺度结构方法的性能,考虑了两个实际的数字实例。