ANSI IEEE 1554-2005 Recommended Practice for Inertial Sensor Test Equipment Instrumentation Data Acquisition and Analysis《惯性传感器试验设备、仪器、数据获取和分析的推荐实施规程》.pdf
《ANSI IEEE 1554-2005 Recommended Practice for Inertial Sensor Test Equipment Instrumentation Data Acquisition and Analysis《惯性传感器试验设备、仪器、数据获取和分析的推荐实施规程》.pdf》由会员分享,可在线阅读,更多相关《ANSI IEEE 1554-2005 Recommended Practice for Inertial Sensor Test Equipment Instrumentation Data Acquisition and Analysis《惯性传感器试验设备、仪器、数据获取和分析的推荐实施规程》.pdf(115页珍藏版)》请在麦多课文档分享上搜索。
1、IEEE Std 1554-2005IEEE Recommended Practice forInertial Sensor Test Equipment,Instrumentation, Data Acquisition,and AnalysisI E E E3 Park Avenue New York, NY 10016-5997, USA28 November 2005IEEE Aerospace and Electronic Systems SocietySponsored by theGyro and Accelerometer PanelRecognized as anAmeric
2、an National Standard (ANSI)IEEE Std 1554-2005(R2011)IEEE Recommended Practice for Inertial Sensor Test Equipment, Instrumentation, Data Acquisition, and AnalysisSponsorGyro Accelerometer Panel Committeeof theIEEE Aerospace and Electronic Systems SocietyApproved 5 October 2005Reaffirmed 16 April 2012
3、American National Standards InstituteApproved 9 June 2005Reaffirmed 31 March 2011IEEE-SA Standards BoardThe Institute of Electrical and Electronics Engineers, Inc.3 Park Avenue, New York, NY 10016-5997, USACopyright 2005 by the Institute of Electrical and Electronics Engineers, Inc.All rights reserv
4、ed. Published 28 November 2005. 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. ivCopyrigh
5、t 2005 IEEE. All rights reserved.IntroductionThis document gives recommended practices for gyroscope and accelerometer testing and test data analysis.General and sensor specific equipment and instrumentation are described, including mounting fixtures,dividing heads and rotary test tables, vibration
6、and shock machines, centrifuges, radiation test facilities, andthermal and other environmental chambers. Inertial sensor readouts, test control, data acquisition, filtering,and analysis are discussed. Analysis procedures include plotting, least-square polynomial and other fits,power spectral density
7、 and Allan variance noise analysis, and performance model parameter calibrationestimation. This recommended practice represents a consensus of manufacturers and users in industry, governmentagencies, and other interested groups. When necessary, the needs of the inertial sensor community havebeen giv
8、en preference over general technical usage. This recommended practice was prepared by the Gyro and Accelerometer Panel of the AerospaceElectronics System Society of the Institute of Electrical and Electronic Engineers. This document representsa group effort on a large scale. A total of 81 individual
9、s attended 31 meetings of the Gyro and AccelerometerPanel while this standard was in preparation. Notice to usersErrataErrata, if any, for this and all other standards can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/updates/errata/index.html. Users are encouraged to check
10、 this URL forerrata periodically.InterpretationsCurrent interpretations can be accessed at the following URL: http:/standards.ieee.org/reading/ieee/interp/index.html.PatentsAttention is called to the possibility that implementation of this standard may require use of subject mattercovered by patent
11、rights. By publication of this standard, no position is taken with respect to the existence orvalidity of any patent rights in connection therewith. The IEEE shall not be responsible for identifying patentsor patent applications for which a license may be required to implement an IEEE standard or fo
12、r conductinginquiries into the legal validity or scope of those patents that are brought to its attention.This introduction is not part of IEEE Std 1554-2005, IEEE Recommended Practice for Inertial Sensor TestEquipment, Instrumentation, Data Acquisition, and Analysis.vCopyright 2005 IEEE. All rights
13、 reserved.ParticipantsAt the time this recommended practice was completed, the Gyro and Accelerometer Working Group had thefollowing membership:Randall Curey, ChairThe following individuals also contributed to the development of this recommended practice.Jacques P. Govignon Duane E. Larsen Richard S
14、pencer Joseph A. MiolaThe following members of the individual balloting committee voted on this guide. Balloters may have votedfor approval, disapproval, or abstention.When the IEEE-SA Standards Board approved this guide on 9 June 2005, it had the following membership:Steve M. Mills, ChairRichard H.
15、 Hulett, Vice ChairJudith Gorman, Secretary*Member EmeritusAlso included are the following nonvoting IEEE-SA Standards Board liaisons:Satish K. Aggarwal, NRC RepresentativeRichard DeBlasio, DOE RepresentativeAlan H. Cookson, NIST RepresentativeJennie Steinhagen IEEE Standards Project EditorMichael E
16、. AshCleon H. BarkerStephen F. BeckaSid BennettStephen BongiovanniPierre BouniolTim BuckHerbert T. CalifanoA. T. CampbellGeorge W. EricksonYuri FilatovThomas A. FuhrmanKerry N. GreenYoshiaki HirobeTommy IchinoseJean-Franois KiefferTakashi KunimiGreg LeporeDmitri LoukianovBryan LovittJean MartelRober
17、t MooreHarold D. MorrisBart Morrow, Jr.Charles PearceRex B. PetersArkadii SinelnikovDavid RozelleVladimir SkvortzovDaniel TazartesMohammad TehraniLeroy O. ThielmanAngelo TruncaleDavid J. WinkelBruce R. YoumansMichael AshCleon H. BarkerSid BennettKeith ChowRobert CorrellusRandall CureyRobert Dahlgren
18、Jean-Franois KiefferVladimir SkvortzovDaniel TazartesLeroy O. ThielmanBruce R. YoumansMark D. BowmanDennis B. BrophyJoseph BruderRichard CoxBob DavisJulian Forster*Joanna N. GueninMark S. HalpinRaymond HapemanWilliam B. HopfLowell G. JohnsonHerman KochJoseph L. Koepfinger*David J. LawDaleep C. Mohla
19、Paul NikolichT. W. OlsenGlenn ParsonsRonald C. PetersenGary S. RobinsonFrank StoneMalcolm V. ThadenRichard L. TownsendJoe D. WatsonHoward L. WolfmanContents1. Overview 11.1 Scope . 11.2 Purpose 22. Normative references 22.1 IEEE standards 22.2 ISO standards. 32.3 Nuclear radiation test standards. 33
20、. Test planning 43.1 Classification of tests. 43.2 Calibrated parameter characteristics 43.3 Test plan outline 53.4 Test station log book 54. General equipment 64.1 Calibration of equipment . 64.2 Test station power supplies and grounds . 64.3 Time and frequency standard. 64.4 Precision voltage refe
21、rence 74.5 Voltmeters . 74.6 Ammeters and wattmeters . 74.7 Resistance references. 74.8 Magnetic field shielding 84.9 Magnetic field generation and measurement . 84.10 Frequency synthesizers 84.11 Oscilloscopes. 94.12 Spectrum analyzer . 94.13 Signal analyzer 94.14 Voltage- or current-to-frequency c
22、onverters . 94.15 Frequency counters 94.16 Temperature controllers. 104.17 Temperature-monitoring equipment 104.18 Bubble levels and tilt meters 104.19 Autocollimator. 114.20 Displacement measurement systems . 114.21 Other general commercial equipment 124.22 Specially built equipment 135. Sensor-spe
23、cific equipment 136. Mounting fixture. 146.1 Fixture mechanical design . 146.2 Thermal control of fixture . 146.3 Vibration fixture 146.4 Centrifuge fixture 156.5 Radiation test fixture . 15viCopyright 2005 IEEE. All rights reserved. 7. Test piers 167.1 Location of test piers . 167.2 Vibration envir
24、onment of test pier. 167.3 Tilt and azimuth motion of test pier. 167.4 Active control of test pad. 178. Accelerometer dividing heads (or turntables). 178.1 Use of accelerometer dividing heads . 178.2 Placement of dividing head . 188.3 Thermal control on dividing head 188.4 Alignment of dividing head
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