首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Aspects of and Insights Into the Rigorous Validation, Verification, and Testing Processes for a Commercial Electromagnetic Field Solver Package
【24h】

Aspects of and Insights Into the Rigorous Validation, Verification, and Testing Processes for a Commercial Electromagnetic Field Solver Package

机译:商业电磁场求解器套件的严格验证,验证和测试过程的各个方面和真知灼见

获取原文
获取原文并翻译 | 示例
           

摘要

This paper focuses on rigorous validation, verification, and testing methodologies applied to a commercial electromagnetic software package to ensure that as accurate as possible results are given dependent on the accuracy of the solution method, for instance, whether a full-wave or approximate numerical method is used. In this paper, the general availability of reliable benchmark results such as analytical solutions, measurements, results from other codes and other numerical methods, and general benchmarking activities will be presented. The cross-validation aspects, once the benchmark results are available, will be discussed with respect to amongst other sequential runs compared with parallel multcore/cluster runs or, with and without, GPU acceleration. Internal consistency checks (which are a required but not necessary condition when assessing the accuracy) such as power budget, mesh size convergence, or boundary condition error estimates are also covered. Special emphasis is put on the validation of the actual computational model that is used as input to simulations. This is necessary, for example, because incomplete representation of real geometry might ignore small details that are needed for the specific quantity that is analyzed. Also, uncertainties with regards to material parameters or transition impedances could lead to discrepancies between the computed results and reality that are not to be attributed to the electromagnetic solution as such, but rather the model generation.
机译:本文着重于应用于商用电磁软件包的严格的验证,验证和测试方法,以确保根据求解方法的准确性(例如全波或近似数值方法)给出尽可能准确的结果用来。在本文中,将介绍可靠基准测试结果的一般可用性,例如分析解决方案,测量结果,其他代码和其他数值方法的结果以及一般基准测试活动。一旦基准测试结果可用,交叉验证方面将在其他顺序运行中与并行多核/集群运行(有或没有GPU加速)进行比较。还包括内部一致性检查(评估准确性时的必要条件,但不是必需条件),例如功率预算,网格尺寸收敛或边界条件误差估计。特别强调了对用作计算输入的实际计算模型的验证。例如,这是必要的,因为真实几何图形的不完整表示可能会忽略分析的特定量所需的小细节。同样,材料参数或跃迁阻抗方面的不确定性可能导致计算结果与现实之间的差异,这种差异并非归因于电磁解决方案本身,而是模型生成。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号