IEEE 1597.1-2022
$37.92
IEEE Standard for Validation of Computational Electromagnetics Computer Modeling and Simulations (Approved Draft)
Published By | Publication Date | Number of Pages |
IEEE | 2022 |
Revision Standard – Active. A method to validate computational electromagnetics computer modeling and simulation techniques, codes, and models is defined in this standard. It is applicable to a wide variety of electromagnetic applications including, but not limited to, the fields of electromagnetic compatibility, radar cross section, signal integrity, and antennas. Validation of a particular solution data set can be achieved by comparison to the data set obtained by measurements, alternative codes, canonical methods, or analytic methods.
IEEE 1597.1-2022
$37.92
IEEE Standard for Validation of Computational Electromagnetics Computer Modeling and Simulations (Approved Draft)
Published By | Publication Date | Number of Pages |
IEEE | 2022 | 52 |
Revision Standard – Active. A method to validate computational electromagnetics computer modeling and simulation techniques, codes, and models is defined in this standard. It is applicable to a wide variety of electromagnetic applications including, but not limited to, the fields of electromagnetic compatibility, radar cross section, signal integrity, and antennas. Validation of a particular solution data set can be achieved by comparison to the data set obtained by measurements, alternative codes, canonical methods, or analytic methods.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | IEEE Std 1597.1ā¢-2022 Front cover |
2 | Title page |
4 | Important Notices and Disclaimers Concerning IEEE Standards Documents |
8 | Participants |
9 | Introduction |
10 | Contents |
11 | 1.āOverview 1.1āScope 1.2āPurpose 1.3āWord usage |
12 | 1.4āBackground 1.5āAccuracy, uncertainty, and related issues |
16 | 2.āNormative references 3.āAcronyms and abbreviations |
17 | 4.āComputational electromagnetics modeling and simulation validation process 4.1āGeneral 4.2āLevels of model validation |
18 | 4.3āPreparation for validation using engineering judgment |
19 | 4.4āExternal references or self-references 5.āExternal references for model validation 5.1āGeneral 5.2āClosed-form equation references |
20 | 5.3āStandard problem references 5.4āMeasurement references |
21 | 5.5āAlternative modeling technique-derived reference |
22 | 6.āSelf-references for model validation 6.1āGeneral 6.2āConvergence-based self-referenced models |
23 | 6.3āGeometry-based self-referenced models 7.āSelection of an appropriate validation method |
24 | 8.āNumerical calculation of the validation rating using the feature selective validation procedure 8.1āGeneral 8.2āFeature selective validation |
25 | 8.3āValidation rating scale 8.4āFSV Procedure |
32 | 8.5āAdditional steps |
34 | 8.6āApplication specific context 9.āValidation Report |
36 | AnnexĀ A (informative) Bibliography |
43 | AnnexĀ B (informative) Guidelines on the selection of CEM techniques and codes B.1āEnsemble of problem drivers B.2āCategories of CEM techniques |
46 | AnnexĀ C (informative) Examples of CEM and related computational techniques |
52 | Back cover |