ASTM F3528-21 PDF
Standard Test Method for Exoskeleton Use: Gait
Standard Test Method for Exoskeleton Use: Gait
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 15
- Дата публикации:
- 1 октября 2021 г.
- Издание:
- F3528
- ICS:
- 11.180.01
SIGNIFICANCE AND USE 5.1 Exoskeletons are being used in the industrial/occupational, military, response, medical, and recreational sectors to enhance safety and effectiveness of the user to perform tasks. Gait is a component of many tasks that someone would do with an exoskeleton. For example, an exoskeleton may be used to help rehabilitate a patient who suffered a traumatic leg injury. In manufacturing, warehousing, military, and other similar environments, workers and soldiers in exoskeletons walk with and without carrying loads, many times over long distances, indoors or outdoors, as part of their daily activities. Fig. 1 shows examples of exoskeleton users walking, which, depending upon the task, may require people to traverse various ground surfaces while wearing an exoskeleton. The testing results of exoskeletons shall describe, in a statistically significant way, how reliably the exoskeleton is able to support tasks within the specified types of environments, confinements, and terrains, and thus provide sufficiently high levels of confidence to determine the applicability of the exoskeleton to a given task. FIG. 1 Examples of Exoskeleton Users Walking in Various Sectors Note 1: Examples include: (a) medical rehabilitation (courtesy Gogoa), (b) military material handling (courtesy Mawashi), (c) military soldiering (courtesy Mawashi), (d) recreational hiking through snow and (e) walking on pavement as part of daily work duties (courtesy Humotech), and (f) industrial worker standing up from a chair prior to walking (courtesy SuitX). 5.2 This test method addresses exoskeleton safety and performance requirements expressed by manufacturing, emergency responders, military, or other organizations requesting this test. The safety and performance data captured within this test method are indicative of the test exoskeleton’s and the exoskeleton user’s capabilities. Having available direct information from tested exoskeleton(s) with associated performance data to guide procurement and... SCOPE 1.1 Purpose: 1.1.1 The purpose of this test method, as a part of a suite of exoskeleton use test methods, is to quantitatively evaluate an exoskeleton’s (see Terminology F3323) safety (see 1.4) or performance, or both, for gait. 1.1.2 Exoskeletons shall possess a certain set of allowable exoskeleton user movement capabilities, including user-motion adaptability, to suit operations such as: industrial/occupational, military, response, medical or recreational. Environments in these typical sectors often pose constraints to exoskeleton user movement to various degrees. Being able to walk, as intended by the user or test requestor, while using an exoskeleton is essential for exoskeleton deployment for a variety of tasks. This test method specifies test setup, procedure, and recording to standardize this gait task for testing exoskeleton user movement. 1.1.3 Exoskeletons shall be able to handle many types of task and terrain complexities. The required movement capabilities include, for example: walking, running, crawling, climbing, traversing gaps, hurdles, stairs, slopes, various types of floor surfaces or terrains, and confined spaces. Standard test methods are required to evaluate whether or not exoskeletons meet these requirements. 1.1.4 ASTM Subcommittee F48.03 develops and maintains international standards for task performance and environmental considerations that include but are not limited to, standards for safety, quality, and efficiency. This subcommittee aims to develop standards for any exoskeleton application, as exemplified as in 1.1.2. The F48.03 test suite consists of a set of test methods for evaluating exoskeleton capability requirements. This gait test method is a part of the test suite. The setup, procedure, and apparatuses associated with the test methods challenge specific exoskeleton capabilities in repeatable ways to facilitate comparison of different exoskeleton models or exoskeleton capa...
Abstract
Overview
ASTM F3528-21: Standard Test Method for Exoskeleton Use-Gait is an internationally recognized standard developed by ASTM to evaluate the safety and performance of exoskeletons during gait-related tasks. Applicable across industrial, military, emergency response, medical, and recreational sectors, this standard provides a quantitative methodology for assessing how effectively an exoskeleton supports user movement, especially walking, in various environments and conditions. Its structured test methods aim to deliver reliable, repeatable results to enable users, manufacturers, and purchasers to make informed decisions about exoskeleton deployment, procurement, and training.
Key Topics
- Gait Assessment: The standard presents three primary tests-6 Minute Walk Test (6MWT), 10 Meter Walk Test (10MWT), and Timed Up and Go (TUG)-to measure aerobic capacity, walking speed, mobility, balance, and overall user performance while using an exoskeleton.
- Sector Versatility: Designed for industrial workers, soldiers, emergency responders, rehabilitation patients, and recreational users, ensuring that exoskeletons can handle sector-specific movement challenges.
- Environment & Terrain Considerations: The test method requires exoskeletons to demonstrate reliable performance on diverse surfaces, under varying environmental conditions, and while negotiating obstacles, confined spaces, or loads.
- Performance & Safety Metrics: The methodology captures metrics such as walking speed, distance, endurance, and stability, alongside data on falls, stumbles, or other anomalies. Safety concerns such as slips, trips, and fatigue are explicitly addressed.
- Standardization & Repeatability: The apparatus and procedures are specified to ensure self-evaluation and consistency, facilitating the comparison of different exoskeleton models or configurations.
Applications
ASTM F3528-21 is essential for organizations and individuals involved in:
- Product Development: Exoskeleton designers and manufacturers use these gait tests for iterative development, benchmarking, and validation to ensure products meet diverse operational requirements.
- Procurement & Deployment: Purchasing agents and end-users-such as factories, warehouses, hospitals, military units, or public safety agencies-rely on performance data from these standardized tests to guide investment and deployment decisions.
- Rehabilitation & Medical Evaluation: Clinicians and therapists assess patient progress and exoskeleton suitability for gait rehabilitation after injury or illness using these test protocols.
- Training and Proficiency: Standardized testing helps train exoskeleton users to achieve proficiency and provides feedback on performance under authentic environmental and operational conditions.
- Risk Assessment: The standard integrates protocols for identifying and mitigating biomechanical and environmental risks, promoting safer exoskeleton use.
Related Standards
For comprehensive evaluation and safe exoskeleton operation, consider these related international and ASTM standards:
- ASTM F3323: Terminology for Exoskeletons and Exosuits-Establishes common definitions.
- ASTM F3427: Practice for Documenting Environmental Conditions for Exoskeleton Test Methods-Ensures precise environmental reporting.
- ASTM F3443: Practice for Load Handling When Using an Exoskeleton-Covers scenarios where users bear loads.
- ASTM F3474: Practice for Establishing Exoskeleton Functional Ergonomic Parameters and Test Metrics.
- ASTM F3517: Practice for Movement Tests When Using an Exoskeleton.
- ASTM F3527: Guide for Assessing Risks Related to Implementation of Exoskeletons in Task-Specific Environments.
- ISO 13482: Robots and Robotic Devices-Safety Requirements for Personal Care Robots.
By adhering to ASTM F3528-21, stakeholders ensure exoskeleton gait performance is measured rigorously, consistently, and with a high degree of confidence, advancing both innovation and user safety in this rapidly growing field.
Технические детали
- Технический комитет
- F48 - Exoskeletons and Exosuits
- SKU
- ASTM F3528-21
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