返回
A Bayesian design method for monopropellant engine system reliability qualification test plan
DOI:10.1016/j.ress.2024.110173.png)
摘要
En 中文
During the development of systems, traditional System Reliability Qualification Testing (SRQT) is typically utilized to assess whether they meet predefined reliability standards. However, this approach often demands substantial sample sizes and prolonged test durations, rendering it impractical for costly, highly reliable systems with limited sample sizes. Additionally, the extended test duration may not align with practical time-to-market pressures or budget constraints. To overcome these challenges, the study integrates subsystem data into the monopropellant engine system RQT plan's design. By leveraging Monte-Carlo simulation, subsystem data is modeled to create a system parameter distribution, enabling the formulation of SRQT plans based on posterior risks. An example of a monopropellant liquid rocket engine system is provided to demonstrate the advantages and applications of the proposed methodology.
Keyword:
Monopropellant engine
Reliability qualification test plan
System reliability
Monte -Carlo
Reliability block diagram
期刊
R
IF:
11
论文数:
9.0K
被引数:
4.2W
机构
引用论文
Assessment of simple colorimetric procedures to determine smoking status of diabetic subjects评估简单的比色程序以确定糖尿病受试者的吸烟状况
Bayesian Methods for Reliability Demonstration Test for Finite Population Using Lot and Sequential Sampling
SUSTAINABILITY
IF3.3

