해외표준 상세정보
관심표준 등록 : 표준업데이트 시 알림서비스
제공형태 더보기-
표준
판매
ASTM F3381-19
Standard Practice for Describing Stationary Obstacles Utilized within A-UGV Test Methods- 발행일 : 2019-12-01
- 발행기관 : ASTM
상세정보
분야 | 15.08 : 감지측정, 진공청소기, 안전 시스템 |
---|---|
적용범위 | 1.1 This practice specifies physical characteristics that can be used to describe obstacles utilized within ASTM Committee F45 test methods. The obstacle characteristics specified in this practice are not described with respect to the manner in which they will be sensed or detected by an A-UGV. Rather, the obstacles are described according to their real world characteristics. For example, the real world characteristics of a wooden box that is flat black on one side can be described according to its actual dimensions, material, and color. An A-UGV with a lidar sensor may have difficulty detecting the side of the box that is flat black, which could make the obstacle appear smaller to the A-UGV compared to its actual dimensions in the real world. However, this may not be the case for other A-UGVs due to the wide variety of sensors used to detect obstacles, so the actual, real world characteristics are used to describe it instead. 1.2 Real world, existing objects can be used as obstacles and described using this practice. The characteristics specified herein can also be used to construct test artifacts to use as representative obstacles that are intended to have similar characteristics to that of real world obstacles. The obstacles that can be described using this practice may be found in indoor and outdoor environments. 1.3 This practice does not purport to cover all relevant obstacle characteristics that may have an effect on A-UGV performance. The characteristics specified in this practice are limited to the physical properties which are considered to be the most salient in terms of the effects they can have on A-UGV performance. As such, the user of this standard may select the level of detail to use in order to describe the characteristics of an obstacle in such a way. The characteristics are also limited to those which are more easily measurable and replicable when comparing test method results that use similar obstacles. 1.4 This practice only covers obstacles that exist on or above the ground, sometimes referred to as positive obstacles, and remain stationary while the A-UGV is performing tasks. Stationary real world obstacles of this type include pallets on the ground, desks and tables, and other A-UGVs. This practice does not include obstacles that exist below the ground (for example, holes), sometimes referred to as negative obstacles. This practice does not cover boundaries or features in an environment that are unchanging and known prior to an A-UGV task, such as walls, racks, or other infrastructure. 1.5 This practice specifies a variety of physical characteristics of an obstacle, including shapes, dimensions, and surface qualities. This practice does not specify the location properties of an obstacle within a test method apparatus aside from measurements in reference to the ground plane of the environment. 1.6 When constructing a test artifact as an obstacle representative of a genuine obstacle (see 4.1), a combination of characteristics can be selected and used to guide fabrication. The use of similar genuine obstacles (that is, real world objects) may decrease reproducibility of testing conditions compared to using artifact obstacles (that is, those that are fabricated for the purposes of testing), unless the same real world object is used between multiple tests. 1.7 This practice does not specify A-UGV performance in the presence of obstacles. The intent of this practice is to enable comparisons between tests that use obstacles with similar characteristics. 1.8 This practice does not require that certain obstacle characteristics be used as part of a test method. The test requestor can elect specific obstacle characteristics to be used as part of a test method. 1.9 Obstacles described using this practice can be utilized in test methods specified by other ASTM Committee F45 standards, such as Test Method F3244 – 17. In the appendix, a baseline test is described that can be used to determine if an obstacle is able to be detected by an A-UGV’s sensors prior to utilizing the obstacle in another ASTM Committee F45 test method (see X1.2). 1.10 The values stated in SI units are to be regarded as the standard. The values given in parentheses are not precise mathematical conversions to imperial units. They are close approximate equivalents for the purpose of specifying material dimensions or quantities that are readily available to avoid excessive fabrication costs of test apparatuses while maintaining repeatability and reproducibility of the test method results. These values given in parentheses are provided for information only and are not considered standard. 1.11 This 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.12 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee. |
국제분류(ICS)코드 |
43.020 : 도로 수송 일반
35.240.60 : 수송, 무역 및 기타 분야에서의 IT 응용 |
페이지수 | 17 |
Edition | 19 |
이력정보
No. | 표준번호 | 표준명 | 발행일 | 상태 |
---|---|---|---|---|
1 | ASTM F3381-19상세보기 | Standard Practice for Describing Stationary Obstacles Utilized within A-UGV Test Methods | 2019-12-01 | 표준 |
관련상품
- 관련상품이 존재하지 않습니다.
다른 사람이 함께 구입한 상품
- ASTM F3265-17 - Standard Test Method for Grid-Video Obstacle Measurement
- ASTM F3218-19 - Standard Practice for Documenting Environmental Conditions for Utilization with A-UGV Test Methods
- ISO 26262-2:2018 - Road vehicles — Functional safety — Part 2: Management of functional safety
- ASTM F3499-21 - Standard Test Method for Confirming the Docking Performance of A-UGVs
- KS X ISO TS 19091 - 지능형 교통 시스템 — 협력형 ITS(C-ITS) — 신호 교차로 관련 애플리케이션에 대한 V2I 및 I2V 통신 이용
추천 상품
- IEC TS 63134:2020 - Active assisted living (AAL) use cases
- IEC 60034-5:2020 RLV - Rotating electrical machines - Part 5: Degrees of protection provided by the integral design of rotating electrical machines (IP code) - Classification
- KS B ISO TS 25740-1 - 에스컬레이터 및 무빙워크에 대한 안전요건 — 제1부: 세계공통 필수 안전요건(GESRs)
- KS B ISO TS 8100-21 - 승객 및 화물 운송용 엘리베이터 —제21부: 세계공통 필수안전요건(GESRs)을 충족하는 세계공통 안전 파라미터(GSPs)
- KS C IEC TS 62872 - 산업 시설과 스마트 그리드 사이의 산업 공정 측정, 제어 및 자동화 시스템 인터페이스
제공형태 닫기
PDF :
직접 파일 다운로드 및 인쇄(마이페이지 확인)보안PDF :
직접 파일 다운로드 및 인쇄(마이페이지 확인)* 단, 파일이동 및 복사 불가, 1회 다운로드 및 인쇄가능PRINT :
인쇄본 우편발송, 2~3일 소요(PDF파일 미제공)BOOK :
인쇄본 우편발송, 2~3일 소요(PDF파일 미제공)ZIP :
압축파일형태로 제공 (PDF, HTML, TXT, XLS 등으로 구성), 직접 파일 다운로드(마이페이지 확인)CD/DVD :
직접 파일 다운로드 및 인쇄(마이페이지 확인)DB :
별도 정보 제공HARDCOPY :
해외 배송 상품, 최대 3주 소요바인더 :
바인더 우편발송, 2~3일 소요온라인구독 :
WEB 접속 후 실시간 열람, 출력(1년간)