SAE ARP 5583A-2010 Guide to Certification of Aircraft in a High-Intensity Radiated Field (HIRF) Environment《航空器在高辐射场环境(HIRF)下的认证介绍》.pdf
《SAE ARP 5583A-2010 Guide to Certification of Aircraft in a High-Intensity Radiated Field (HIRF) Environment《航空器在高辐射场环境(HIRF)下的认证介绍》.pdf》由会员分享,可在线阅读,更多相关《SAE ARP 5583A-2010 Guide to Certification of Aircraft in a High-Intensity Radiated Field (HIRF) Environment《航空器在高辐射场环境(HIRF)下的认证介绍》.pdf(130页珍藏版)》请在麦多课文档分享上搜索。
1、_SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising theref
2、rom, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions. Copyright 2010 SAE International All rights reserved. No part of this publication ma
3、y be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: +1 724-776-4970 (outside US
4、A) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.orgSAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/ARP5583AAEROSPACERECOMMENDEDPRACTICEARP5583 REV. A Issued 2003-01 Revised 2010-06Superseding AR
5、P5583 (R) Guide to Certification of Aircraft in a High-IntensityRadiated Field (HIRF) EnvironmentRATIONALEThis revision incorporates changes throughout that are consistent with new Federal Aviation Administration HIRF certification regulations and certification guidance adopted in 2007. It also incl
6、udes revised test methods that were developed after the original release of this ARP. The organization of the ARP was revised to be consistent with the certification steps described in AC 20-158. Due to the extensive re-work and re-organization of this revision the standard change bar indications fo
7、r the changes are not shown, therefore, an R has been placed before the document title. TABLE OF CONTENTS 1. SCOPE 61.1 Purpose . 61.2 Aircraft and HIRF 62. REFERENCES 72.1 SAE International Publications 72.2 Other Publications . 72.3 Applicable Documents 82.3.1 Federal Aviation Administration Docum
8、ents . 82.3.2 Joint Airworthiness Authorities Documents 82.3.3 EASA Documents . 82.3.4 RTCA Publications 82.3.5 EUROCAE Documents . 82.4 Related Documents 92.4.1 U.S. Government Documents . 92.4.2 Military Standards . 92.5 Abbreviations 92.6 Acronyms 103. ELECTROMAGNETIC ENVIRONMENT 123.1 Environmen
9、t Development Process . 133.2 How the Environment was Computed 143.3 Fixed Wing Severe HIRF Environment . 143.3.1 Assumptions for the Calculation of the Fixed Wing Severe HIRF Environment . 163.3.2 Fixed Wing Severe HIRF Environment Tables . 173.4 Rotorcraft Severe HIRF Environment (HIRF Environment
10、 III) 173.4.1 Assumptions for the Calculation of the Rotorcraft HIRF Environment III . 193.4.2 HIRF Environment III (Rotorcraft Severe Environment) Tables . 193.5 HIRF Environment I (Certification HIRF Environment) . 203.5.1 Assumptions for the Calculation of the HIRF Environment I (Certification HI
11、RF Environment) . 203.5.2 HIRF Environment I (Certification HIRF Environment) Tables . 21Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE ARP5583A Page 2 of 1303.6 HIRF Environment II (Normal HIRF
12、 Environment) 223.6.1 Assumptions for the Calculation of the HIRF Environment II (Normal HIRF Environment) . 223.6.2 HIRF Environment II (Normal HIRF Environment) Tables 223.7 Internal Aircraft Environment 233.8 Aircraft Exposure to HIRF . 244. PRACTICAL DESIGN CONSIDERATIONS . 244.1 HIRF Environmen
13、t Reduction . 254.1.1 Coupling Mechanism/Frequency Bands . 254.1.2 Entry Points . 264.1.3 Design Options for HIRF Environment Reduction 274.1.4 Grounding . 274.1.5 Bonding . 284.1.6 Shielding . 284.1.7 Wire Shielding . 294.1.8 Filtering . 304.1.9 Fiber Optic Cables 324.1.10 Maintenance and Design 33
14、4.2 Electrical/Electronic System Robustness . 334.2.1 System Architecture Considerations . 334.2.2 Hardware Design 344.2.3 Circuit Design Measures . 344.2.4 Analog Devices . 344.2.5 Digital Devices 354.2.6 Software Design 354.3 Empirical Methods. 364.4 Analytical Methods 364.5 HIRF Protection Main C
15、ontributors . 384.5.1 Structure 384.5.2 Harness . 394.5.3 System Hardware 394.5.4 System Software . 395. ROUTES TO HIRF COMPLIANCE . 405.1 HIRF Compliance Requirements 435.1.1 HIRF Rule Conflict Provision Clarification 445.1.2 Assessment of the 18 GHz to 40 GHz Frequency Range 455.2 HIRF Compliance
16、Step 1 Safety Assessment . 455.2.1 Considerations in the Safety Assessment 465.2.1.1 Aggravating Factors 465.2.1.2 System Availability and Integrity Considerations in the Safety Assessment 475.2.2 HIRF Safety Assessment Considerations for Combined Effects on Systems 475.3 HIRF Requirements and Rotor
17、craft Hoist Operations 485.4 HIRF Compliance Step 2 Define Aircraft and System HIRF Protection 485.5 Level A System HIRF Verification . 495.5.1 Level A Display Systems 495.5.2 HIRF Verification for Level A Systems 495.5.3 Level A Verification Considerations 505.6 Level B and C System HIRF Verificati
18、on 515.6.1 Aircraft-Derived Test Levels 515.6.2 Level B/C Verification Considerations 515.6.2.1 RF Susceptibility Considerations for Aircraft Systems Exposed to Portable Electronic Devices (PEDs) 525.7 Assess Immunity . 525.8 Corrective Measures . 525.9 HIRF Protection Compliance 526. AIRCRAFT LEVEL
19、 VERIFICATION LEVEL A SYSTEMS . 536.1 Aircraft Assessment Decision (Step 7) . 536.2 Aircraft Test Decision (Step 8) 536.3 Aircraft High-Level Tests (Step 9) . 556.3.1 Aircraft High-Level Test Considerations . 556.3.2 Frequency Coverage and Required Modulation . 55Copyright SAE International Provided
20、 by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE ARP5583A Page 3 of 1306.3.3 Test Safety 576.3.3.1 Personnel Hazards . 576.3.3.2 Aircraft Safety 576.3.3.3 Fuel Ignition . 586.3.4 High Level Direct Drive Test Methodology . 586.3.5 Hi
21、gh Level Radiated Test Methodology 626.3.6 High-Level Tests in a Reverberation Chamber 636.3.7 Antenna Positioning for High Level Radiated Test . 636.3.8 Test Procedure 676.3.9 Field Calibration 686.3.10 Aircraft Illumination 686.3.11 Susceptibility Threshold Measurements . 686.3.12 Data Logging Dur
22、ing Test . 696.3.13 Data Reporting 696.3.14 Aircraft Operating Modes During Test 696.3.15 Degradation Criteria 696.4 Aircraft Low-Level Coupling Tests (Step 10) 696.4.1 Skin Current Analysis (Step 10a): . 706.4.2 Low-Level Direct Drive Test (Step 10b): . 716.4.3 Low-Level Swept Current Test (Step 10
23、c) 736.4.3.1 Using 3D Modeling 776.4.3.2 Alternative to 3D-Modeling 786.4.3.3 Example Final LLSC Test Results 806.4.3.4 Problem Areas 806.4.4 Low-Level Swept Field Test (Step 10d) 816.4.5 Example Averaged LLSF Test Results . 826.5 Generic Transfer Functions for Level A Display Systems (Step 11) 836.
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