REG NASA-STD-5005 REV D-2013 STANDARD FOR THE DESIGN AND FABRICATION OF GROUND SUPPORT EQUIPMENT.pdf
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1、APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED NASA TECHNICAL STANDARD NASA-STD-5005D National Aeronautics and Space Administration Approved: Washington, DC 20546-0001 Superseding NASA-STD-5005C STANDARD FOR THE DESIGN AND FABRICATION OF GROUND SUPPORT EQUIPMENT MEASUREMENT SYSTEM IDENTIFICAT
2、ION: METRIC/SI (ENGLISH) Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5005D APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 2 of 76 DOCUMENT HISTORY LOG Status Document Revision Approval Date Description Baseline 5-10-1996 Baseline
3、Release Revision A 5-15-2001 Incorporated numerous updates to applicable and reference documents Revision B 9-15-2003 Incorporated numerous updates to applicable and reference documents Interim C 7-20-2007 Interim Revision (General RevisionDocument Completely Rewritten) Incorporated numerous updates
4、 to applicable and reference documents, added M (2) it will not degrade the safety or reliability of the flight or ground system; and (3) it provides a cost savings that exceeds possible cost increases due to unique maintenance or logistics requirements, modifications, or an increase in the complexi
5、ty of the interfacing equipment. Vendor or contractor documentation and supporting test data should be incorporated into system control documents. 4.2 System Requirements 4.2.1 Performance Requirements In addition to performance requirements, GSE should be designed for ease of production, manufactur
6、e, construction, and inspection. GSE should be designed to minimize the complexity Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5005D APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 25 of 76 and frequency of maintenance. Close manuf
7、acturing tolerances should be avoided unless required by design and performance. 4.2.1.1 Design Life GSE shall be designed for the operational life specified by program or mission requirements. Engineering documentation should specify maintenance requirements to meet design life. 4.2.1.2 Contaminati
8、on from GSE GSE shall not cause degradation of or contaminate flight systems or ground systems while it is being used, checked out, serviced, or otherwise handled. 4.2.1.3 GSE Design for Access GSE design shall include access provisions for handling, servicing, calibration, maintenance, repair, and
9、replacement of components and limited-life items. GSE design should provide for ease of operation, maintenance, servicing, cleaning, and inspection of hardware and software. GSE fault detection and isolation should be considered based on criticality and cost of failures. 4.2.1.4 Interfaces a. GSE sh
10、all meet the requirements of all interfaces with flight hardware or software as specified in interface control documentation. Interfaces should be verified by test and/or analysis. GSE should be designed to reduce or eliminate the potential for a mating device (fluid, mechanical, or electrical) to b
11、e connected to the wrong interface with flight hardware. b. GSE shall be compatible with all facility interfaces. An assessment may be required to determine if it is more cost-effective to modify the facility interface or design the GSE to meet the existing facility interface. 4.2.2 Heritage GSE Her
12、itage GSE is hardware/software that has been fabricated and delivered to a previous program. GSE designs that were not fabricated are not considered Heritage GSE and must meet the requirements of this Standard. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from
13、 IHS-,-,-NASA-STD-5005D APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 26 of 76 Existing GSE that was verified to meet the GSE design and fabrication requirements of a previous NASA program shall be considered acceptable for use without further verification to the requirements of this Standar
14、d, if the following conditions are met: a. Approval is obtained from the responsible program/project office. b. Waivers to GSE design and fabrication requirements from the previous NASA program are evaluated and approved by the responsible Technical Authority against the equivalent requirements in t
15、his Standard. c. Existing GSE is verified to meet the performance requirements, interfaces, operational limits, and environments for its intended application. GSE design and fabrication requirements for previous NASA programs are defined in SW-E-0002, Ground Support Equipment General Design Requirem
16、ents: Space Shuttle; KSC-DE-512-SM, Facility, System, and Equipment General Design Requirements; SSP 50004, Ground Support Equipment Design Requirements: International Space Station; or a previous version of this Standard. 4.2.3 Reliability 4.2.3.1 Redundancy When redundancy is required to satisfy f
17、ailure tolerance: a. Redundant systems, subsystems, or components shall be designed such that the failure of one will not prevent the other from performing its intended function. Physically orienting or separating redundant items should be considered to prevent propagation of failures (e.g., routing
18、 electrical cables in separate cable trays). b. Redundant systems, subsystems, or components shall be designed such that common-cause failures (e.g., contamination, common power source, etc.) do not eliminate redundancy. c. Redundant systems shall be designed such that each independent path can be t
19、ested without invalidating the system configuration. 4.2.3.2 Failure Tolerance a. GSE (except primary structure and pressure vessels, piping, and tubing in rupture mode) shall be designed such that no single failure or inadvertent operator action results in equipment or facility damage or personal i
20、njury. Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NASA-STD-5005D APPROVED FOR PUBLIC RELEASE DISTRIBUTION IS UNLIMITED 27 of 76 Failure tolerance is not possible for primary structure and pressure vessels/tubing in rupture mode. Safety of these
21、systems is achieved by application of design requirements contained in this standard. GSE may be designed to terminate operations autonomously after the first failure or inadvertent operator action and in time to preclude any scenario that results in equipment or facility damage or personal injury.
22、This approach is consistent with the historical use of the term “fail-safe” by the GSE design community. b. GSE shall be designed to sustain a failure or inadvertent operator action and still perform its basic function when necessary to meet either safety or operational requirements. Purges, ground
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