IEEE 1597 2-2010 en Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations《计算电磁计算机建模和仿真确认推荐实施规程》.pdf
《IEEE 1597 2-2010 en Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations《计算电磁计算机建模和仿真确认推荐实施规程》.pdf》由会员分享,可在线阅读,更多相关《IEEE 1597 2-2010 en Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations《计算电磁计算机建模和仿真确认推荐实施规程》.pdf(124页珍藏版)》请在麦多课文档分享上搜索。
1、g3g3g3IEEE Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations g3Sponsored by the Standards Development Committee g3IEEE 3 Park Avenue New York, NY 10016-5997 USA 25 February 2011 IEEE Electromagnetic Compatibility Society IEEE Std 1597.2-2010IEEE
2、Std 1597.2-2010 IEEE Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations Sponsor Standards Development Committee of the IEEE Electromagnetic Compatibility Society Approved 30 September 2010 IEEE-SA Standards Board Approved 5 May 2011 American Natio
3、nal Standards Institute Abstract: This recommended practice is a companion document for IEEE Std 1597.1-2008. Examples and problem sets to be used in the validation of computational electromagnetics (CEM) computer modeling and simulation techniques, codes, and models are provided. It is applicable t
4、o a wide variety of electromagnetic (EM) applications including but not limited to the fields of antennas, signal integrity (SI), radar cross section (RCS), and electromagnetic compatibility (EMC). This document shows how to validate a particular solution data set by comparing it to the data set obt
5、ained by measurements, alternate codes, canonical, or analytic methods. Keywords: IEEE 1597.2 g120The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2011 by the Institute of Electrical and Electronics Engineers, Inc. All rights reserved.
6、 Published 25 February 2011. Printed in the United States of America. IEEE is a registered trademark in the U.S. Patent +1 978 750 8400. Permission to photocopy portions of any individual standard for educational classroom use can also be obtained through the Copyright Clearance Center. iv Copyright
7、 2011 IEEE. All rights reserved. Introduction This introduction is not part of IEEE Std 1597.2-2010, IEEE Recommended Practice for Validation of Computational Electromagnetics Computer Modeling and Simulations. The development of standards and recommended practices for computational electromagnetics
8、 (CEM) computer modeling and simulation and code validation has been a topic of much interest within the electromagnetics (EM) community primarily since the mid 1980s. This has been due to advancements in computer hardware and software technologies as well as the arrival of new CEM codes and applica
9、tions as we know them today. The areas of concern include, but are not limited to, analyzing printed circuit board (PCB) radiated and conducted emissions/immunity, system-level electromagnetic compatibility (EMC), radar cross section (RCS) of complex structures, and the simulation of various EM envi
10、ronment effects (E3) problems. In particular, there are concerns regarding the lack of well-defined methodologies to achieve code-to-code or even simulation-to-measurement validations within a consistent level of accuracy. IEEE Std 1597.2-2010 is a companion document to the IEEE Std 1597.1-2008.aThe
11、 scope of IEEE Std 1597.1 is to develop a standard for the validation of CEM computer modeling and simulation techniques and codes in differing EMC applications. The standard provides a basis for analytical and empirical validation of CEM codes and configurations focusing on several key areas. The s
12、cope of this recommended practice is to develop a recommended practice for use in CEM computer modeling and simulation applications to guide the EMC design of PCBs to large, complex systems. Areas to be addressed include the following: g127 General guidelines for creating CEM models g127 Development
13、 of modeling methodologies for small-to-large scale canonical, standard validation, and benchmark problems g127 Reducing uncertainty and errors in modeling applications g127 Developing fundamental modeling techniques that are consistent with collaborative, multi-disciplinary engineering applications
14、 The recommended practice will aid modelers and analysts in the selection and application of appropriate modeling and simulations methodologies, physics, and solution techniques to achieve accurate results and to complement measurements and EMC design tasks for a range of progressively complex probl
15、ems. Notice to users Laws and regulations Users of these documents should consult all applicable laws and regulations. Compliance with the provisions of this standard does not imply compliance to any applicable regulatory requirements. Implementers of the standard are responsible for observing or re
16、ferring to the applicable regulatory requirements. IEEE does not, by the publication of its standards, intend to urge action that is not in compliance with applicable laws, and these documents may not be construed as doing so. aInformation on references can be found in Clause 2. v Copyright 2011 IEE
17、E. All rights reserved. Copyrights This document is copyrighted by the IEEE. It is made available for a wide variety of both public and private uses. These include both use, by reference, in laws and regulations, and use in private self-regulation, standardization, and the promotion of engineering p
18、ractices and methods. By making this document available for use and adoption by public authorities and private users, the IEEE does not waive any rights in copyright to this document. Updating of IEEE documents Users of IEEE standards should be aware that these documents may be superseded at any tim
19、e by the issuance of new editions or may be amended from time to time through the issuance of amendments, corrigenda, or errata. An official IEEE document at any point in time consists of the current edition of the document together with any amendments, corrigenda, or errata then in effect. In order
20、 to determine whether a given document is the current edition and whether it has been amended through the issuance of amendments, corrigenda, or errata, visit the IEEE Standards Association web site at http:/ieeexplore.ieee.org/xpl/standards.jsp, or contact the IEEE at the address listed previously.
21、 For more information about the IEEE Standards Association or the IEEE standards development process, visit the IEEE-SA web site at http:/standards.ieee.org. Errata Errata, if any, for this and all other standards can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/updates/er
22、rata/index.html. Users are encouraged to check this URL for errata periodically. Interpretations Current interpretations can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/interp/ index.html. Patents Attention is called to the possibility that implementation of this recommen
23、ded practice may require use of subject matter covered by patent rights. By publication of this recommended practice, no position is taken with respect to the existence or validity of any patent rights in connection therewith. The IEEE is not responsible for identifying Essential Patent Claims for w
24、hich a license may be required, for conducting inquiries into the legal validity or scope of Patents Claims or determining whether any licensing terms or conditions provided in connection with submission of a Letter of Assurance, if any, or in any licensing agreements are reasonable or non-discrimin
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