BS G 257-2-1998 Design of electromagnetic hazard protection of civil aircraft - Guide to protection《民用飞机电磁危害防护设计 防护指南》.pdf
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1、| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | BRITISH STANDARD AEROSPACE SERIES BS G 257
2、 : Part 2 : 1998 ICS 33.100; 49.060 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW Design of electromagnetic hazard protection of civil aircraft Part 2. Guide to protectionBS G 257 : Part 2 : 1998 This British Standard, having been prepared under the direction of the Engineer
3、ing Sector Board, was published under the authority of the Standards Board and comes into effect on 15 March 1998 BSI 1998 The following BSI references relate to the work on this standard: Committee reference ACE/66 Draft for comment 94/714809 DC ISBN 0 580 29504 4 Amendments issued since publicatio
4、n Amd. No. Date Text affected Committees responsible for this British Standard The preparation of this British Standard was entrusted to Technical Committee ACE/66, Aerospace Electromagnetic compatibility of aircraft, upon which the following bodies were represented: ERA Technology Ltd. Federation o
5、f the Electronics Industry Civil Aviation Authority (Airworthiness Division) Ministry of Defence Society of British Aerospace CompaniesBS G 257 : Part 2 : 1998 BSI 1998 i Contents Page Committee responsible Inside front cover Foreword ii Guide 1 1 Scope 1 2 Informative references 1 3 Design of the a
6、irframe 1 4 Design of the system installation 7 5 Design of the equipment 25 Tables 1 Bond resistances 6 2 Typical signal classifications for the purposes of cable segregation 11 3 Recommended types of cables for particular applications 11 Figures 1 The effect of airframe geometry on airframe curren
7、t to effect coupling 8 2 Airframe geometries which will provide useful protection 9 3 Preferred cable routes in a typical front fuselage section 9 4 Parallel and normal electric field components 13 5 Screening mechanism against electric field component 14 6 Magnetic field component coupling with a c
8、able loop 14 7 Magnetic field null at screen centre 14 8 The definition of cable surface transfer impedance 15 9 Test arrangement for surface transfer impedance measurement 15 10 Typical surface transfer impedance values for cable measured in figure 9 16 11 Three simple options for screen and equipm
9、ent bonding 17 12 Resistive earth planes or poor bonding drives earth currents along screens 18 13 Possibilities for video signalling 18 14 Summary of cable screen terminations 19 15 The effect of pigtail terminations 20 16 Possibilities for 0V referencing 22 17 Equipment case protection 25 18 Inter
10、-winding capacitance reduction 26 19 Typical unbalanced input 27 20 Optical isolator installation 28 21 Earthing philosophies 29 22 Combined filter and surge arrestor 31 23 Filter installation 32 24 Gasket installation in bolted joints 34 25 Gasket installation in access panel 34 26 Common impedance
11、 and its alleviation 35 27 Board layout guidelines 36 28 0V and supply track vee layout 37 29 Mounting of continuous decoupling capacitors 37 List of references Inside back coverii BSI 1998 BS G 257 : Part 2 : 1998 Foreword This Part of BS G 257, which has been prepared by Technical Committee ACE/66
12、, is a design guide providing information to engineers involved at all levels in the hardening of civil aircraft and their systems against electromagnetic hazards (EMHs). The design guide will be published in three Parts as follows: Part 1 Guide to electromagnetic theory and the electromagnetic thre
13、ats posed to aircraft Part 2 Guide to protection Part 3 Guide to clearance and testing This Part of BS G 257 provides the principles and resulting design practices which will result in a high degree of success in achieving electromagnetic compatibility (EMC). It is impossible to create a document th
14、e recommendations of which will result in complete success in all situations. This document, therefore, concentrates on the reasons for certain approaches to a problem and illustrates a design strategy by one or more practical solutions. The protection required for a given situation can only be arri
15、ved at by quantitative analysis of the electromagnetic hazard (EMH) protection design performance against the threats within the required cost, weight and volume restrictions. Clause 3 covers the electrical design of the airframe in order to achieve an environment within the airframe which is amenab
16、le to the installation of an electronic/avionic system for survival in a hostile electromagnetic (EM) environment. The section is divided into two major parts; the design of the airframe in non-fuel areas and the design of the airframe in fuelled areas. The philosophy of design in the two areas is q
17、uite different if the airframe utilizes large quantities of carbon fibre composite (CFC). Clause 4 covers the design of the systems installation to complement the airframe design as described in clause 3. Once again this section is divided into the design of the systems installation in non-fuel area
18、s and design of the systems installations in fuelled areas. Clause 5 is devoted to the design features to be considered which will result in good EMH protection performance. The issues considered include; the equipment interface, the equipment case design, printed circuit board (PCB) design and fina
19、lly internal protection. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and ii, pages 1 to 40, an inside back cover and a back cover. BSI 1998 1 BS G 257 : Part 2 : 1
20、998 Guide 1 Scope This Part of this British Standard provides guidance on the design features of airframes and system installations necessary to achieve an acceptable level of EMH protection in a hostile EM environment. 2 Informative references This British Standard refers to other publications that
21、 provide information or guidance. Editions of these publications current at the time of issue of this standard are listed on the inside back cover, but reference should be made to the latest editions. 3 Design of the airframe 3.1 General Details of the airframe design can have major impacts on the i
22、mplications of EMHs on safety or on the cost of ownership. Material choice affects screening performance and different materials also behave quite differently when a lightning arc attaches. The characteristic reactions to arc attachment and current flow from various materials should also be consider
23、ed in relation to their propensity for causing hazardous situations, e.g. fuel explosion. The protection needs will depend on both the material and on the potential hazards and these are discussed separately below. Also to be considered is the distribution of highly conductive material in relation t
24、o the routing of system cables, as great benefit can be obtained by using structural materials to supply as much of the necessary attenuation in induced transients as possible. 3.2 Metallic airframe materials 3.2.1 Skins 3.2.1.1 Metal skins generally provide very good EM shielding, but are susceptib
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