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ASTM F 3178 : 2016

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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Standard Practice for Operational Risk Assessment of Small Unmanned Aircraft Systems (sUAS)

Superseded date

19-12-2024

Superseded by

ASTM F 3178 : 2024

Published date

01-11-2016

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CONTAINED IN VOL. 15.11, 2017 Lays emphasis on preparing operational risk assessments (ORAs) to be used for supporting small unmanned aircraft systems (sUAS) (aircraft under 55 lb (25 kg)) design, airworthiness, and subsequent operational applications to the civil aviation authority (CAA).

Committee
F 38
DocumentType
Standard Practice
PublisherName
American Society for Testing and Materials
Status
Superseded
SupersededBy

1.1This practice focuses on preparing operational risk assessments (ORAs) to be used for supporting small unmanned aircraft systems (sUAS) (aircraft under 55 lb (25 kg)) design, airworthiness, and subsequent operational applications to the civil aviation authority (CAA).

1.2It is expected that manufacturers and developers of larger/higher energy sUAS designs, intended to operate in controlled airspace over populated areas, will adopt many of the existing manned aircraft standards in use. These include standards such as SAE ARP4754A and ARP4761, which prescribe a “design for safety” top-down design approach to ensure the sUAS designs can reasonably meet more stringent qualitative and quantitative safety requirements. The ORA, however, remains the same for all risk profiles and will be a part of any sUAS operation.

1.3In mitigating and preventing incidents and accidents, it is understood that people generally do not seek to cause damage or injure others, and therefore, malicious acts are beyond the scope of this practice.

1.4As part of the ORA, the applicant should clearly understand and be able to articulate their intended mission for purposes of assessing safety and providing information to regulators. This documentation of a sUAS operation (mission, or set of missions) is what many refer to as a concept of operations (CONOPS).

1.5This practice is intended primarily for sUAS applicants seeking approval or certification for airworthiness or operations from their respective CAA, though sUAS manufacturers may consider this practice, along with other system safety design standards, as appropriate to identify sUAS design and operational requirements needed to mitigate hazards.

1.6Units—The values stated in inch-pound units are to be regarded as the standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.

1.7This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

ASTM F 3196 : 2017 Standard Practice for Seeking Approval for Extended Visual Line of Sight (EVLOS) or Beyond Visual Line of Sight (BVLOS) Small Unmanned Aircraft System (sUAS) Operations
ASTM F 3196 : 2018 Standard Practice for Seeking Approval for Beyond Visual Line of Sight (BVLOS) Small Unmanned Aircraft System (sUAS) Operations
ASTM F 3298 : 2018 Standard Specification for Design, Construction, and Verification of Fixed-Wing Unmanned Aircraft Systems (UAS)
ASTM F 3298 : 2019 Standard Specification for Design, Construction, and Verification of Lightweight Unmanned Aircraft Systems (UAS)
ASTM F 3269 : 2017 Standard Practice for Methods to Safely Bound Flight Behavior of Unmanned Aircraft Systems Containing Complex Functions
ASTM F 3266 : 2018 Standard Guide for Training for Remote Pilot in Command of Unmanned Aircraft Systems (UAS) Endorsement
ASTM F 3341/F3341M : 2024 Standard Terminology for Unmanned Aircraft Systems
ASTM F 3266 : 2023 Standard Guide for Training for Remote Pilot in Command of Unmanned Aircraft Systems (UAS) Endorsement
ASTM F 3298 : 2024 Standard Specification for Design and Construction of Lightweight Unmanned Aircraft Systems (UAS)
ASTM F 3269 : 2021 Standard Practice for Methods to Safely Bound Behavior of Aircraft Systems Containing Complex Functions Using Run-Time Assurance
ASTM F 3201 : 2024 Standard Practice for Ensuring Dependability of Software Used in Unmanned Aircraft Systems (UAS)
ASTM F 3330 : 2023 Standard Specification for Training and the Development of Training Manuals for the UAS Operator

SAE ARP4754A Guidelines for Development of Civil Aircraft and Systems
SAE ARP4761 GUIDELINES AND METHODS FOR CONDUCTING THE SAFETY ASSESSMENT PROCESS ON CIVIL AIRBORNE SYSTEMS AND EQUIPMENT

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