In the field of model-based system assessment,mathematical models are used to interpret the system behaviors.However,the industrial systems in this intelligent era will be more manageable.Various management operations...In the field of model-based system assessment,mathematical models are used to interpret the system behaviors.However,the industrial systems in this intelligent era will be more manageable.Various management operations will be dynamically set,and the system will be no longer static as it is initially designed.Thus,the static model generated by the traditional model-based safety assessment(MBSA)approach cannot be used to accurately assess the dependability.There mainly exists three problems.Complex:huge and complex behaviors make the modeling to be trivial manual;Dynamic:though there are thousands of states and transitions,the previous model must be resubmitted to assess whenever new management arrives;Unreusable:as for different systems,the model must be resubmitted by reconsidering both the management and the system itself at the same time though the management is the same.Motivated by solving the above problems,this research studies a formal management specifying approach with the advantages of agility modeling,dynamic modeling,and specification design that can be re-suable.Finally,three typical managements are specified in a series-parallel system as a demonstration to show the potential.展开更多
针对飞控系统安全性分析问题,提出一种基于系统拓展模型(extended system model,ESM)的安全性分析方法。首先,运用Simulink建立系统名义模型。然后,对名义模型进行故障注入,得到系统扩展模型,观察故障情况下的系统响应并对系统进行安全...针对飞控系统安全性分析问题,提出一种基于系统拓展模型(extended system model,ESM)的安全性分析方法。首先,运用Simulink建立系统名义模型。然后,对名义模型进行故障注入,得到系统扩展模型,观察故障情况下的系统响应并对系统进行安全性分析。最后,选取操纵舵面系统(副翼/方向舵)为例。结果表明,系统故障拓展模型使得模型保持完整性和一致性,能够模拟系统故障多状态模式,保证了安全性分析结果的准确性和完整性。展开更多
以形式化建模和利用模型检查进行自动化分析验证为核心的基于模型的安全性分析(model based safety analysis,MBSA)技术能够提高工作效率和分析结果的客观性,已在复杂大型装备系统的安全性工作中得到广泛重视与应用。现有的MBSA框架下...以形式化建模和利用模型检查进行自动化分析验证为核心的基于模型的安全性分析(model based safety analysis,MBSA)技术能够提高工作效率和分析结果的客观性,已在复杂大型装备系统的安全性工作中得到广泛重视与应用。现有的MBSA框架下的建模过程较为复杂,且通常需要模型转换,易造成模型信息的损失,影响安全性分析结果的准确性和全面性。面向模型检查,提出了基于符号语言构建统一系统模型的方法 ,研究了形式化语言元素与系统功能、结构和故障模式之间的分配与映射关系,利用时态逻辑公式规范了系统安全性要求的定义。最后,以飞控系统的前主桨舵机为例进行了案例应用,验证建模方法的有效性和适用性。展开更多
基金the National Natural Science Foundation of China(52105070,U21B2074)Department of Science and Technology of Liaoning Province China(2033JH1/10400007).
文摘In the field of model-based system assessment,mathematical models are used to interpret the system behaviors.However,the industrial systems in this intelligent era will be more manageable.Various management operations will be dynamically set,and the system will be no longer static as it is initially designed.Thus,the static model generated by the traditional model-based safety assessment(MBSA)approach cannot be used to accurately assess the dependability.There mainly exists three problems.Complex:huge and complex behaviors make the modeling to be trivial manual;Dynamic:though there are thousands of states and transitions,the previous model must be resubmitted to assess whenever new management arrives;Unreusable:as for different systems,the model must be resubmitted by reconsidering both the management and the system itself at the same time though the management is the same.Motivated by solving the above problems,this research studies a formal management specifying approach with the advantages of agility modeling,dynamic modeling,and specification design that can be re-suable.Finally,three typical managements are specified in a series-parallel system as a demonstration to show the potential.
文摘针对飞控系统安全性分析问题,提出一种基于系统拓展模型(extended system model,ESM)的安全性分析方法。首先,运用Simulink建立系统名义模型。然后,对名义模型进行故障注入,得到系统扩展模型,观察故障情况下的系统响应并对系统进行安全性分析。最后,选取操纵舵面系统(副翼/方向舵)为例。结果表明,系统故障拓展模型使得模型保持完整性和一致性,能够模拟系统故障多状态模式,保证了安全性分析结果的准确性和完整性。
文摘以形式化建模和利用模型检查进行自动化分析验证为核心的基于模型的安全性分析(model based safety analysis,MBSA)技术能够提高工作效率和分析结果的客观性,已在复杂大型装备系统的安全性工作中得到广泛重视与应用。现有的MBSA框架下的建模过程较为复杂,且通常需要模型转换,易造成模型信息的损失,影响安全性分析结果的准确性和全面性。面向模型检查,提出了基于符号语言构建统一系统模型的方法 ,研究了形式化语言元素与系统功能、结构和故障模式之间的分配与映射关系,利用时态逻辑公式规范了系统安全性要求的定义。最后,以飞控系统的前主桨舵机为例进行了案例应用,验证建模方法的有效性和适用性。