arrow
返回

Optimal task aborting policy and component activation delay in consecutive multi-attempt missions

delete2023-10-01
delete12
PRE
AI
G
Gregory Levitin
Liudong Xing 封面图
Liudong Xing (Liudong Xing)
Y
Yuanshun Dai *
DOI:10.1016/j.ress.2023.109482delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Recent reliability literature has extended the investigation of mission abort policies for single-attempt missions to multi-attempt missions, where the mission task may be attempted multiple times and each attempt may be performed by a single component or by multiple components simultaneously. To exploit the low operation cost achieved by the single component case and the high mission success probability (MSP) achieved by the multicomponent case, this paper proposes a new model of multiple attempts performed consecutively with a prespecified activation delay by different components. Each attempt engages an operation phase and a return/rescue phase following the completion or abortion of the operation phase. During the two phases, components are exposed to random environments with different shock processes. A numerical algorithm is proposed to evaluate mission metrics including the MSP, expected number of lost components and expected mission losses (EML). An optimization problem is formulated and solved, which determines the activation delay as well as the attempt abort policy (composed of the number of shocks experienced and an operation time threshold triggering the abortion) to minimize the EML. The proposed model and influences of several model parameters are demonstrated by a case study of unmanned aerial vehicles performing a reconnaissance mission.
Keyword:
Consecutive multi-attempt mission
Mission time
Attempt abort
Activation delay
Expected mission losses
Random shocks

期刊

R
Reliability Engineering and System Safety
IF:
11
论文数:
9.0K
被引数:
4.2W

机构

S
Southwest Jiaotong University
学者数:
2.9W
论文数: 2.1W
被引数: 2.3W
U
University Massachusetts Dartmouth
学者数:
1.0K
论文数: 932
被引数: 7
引用论文

引用论文

err分享
err收藏
学者 查看更多内容