为提高土压平衡盾构施工过程中的风险管控力度,增加盾构施工参数控制的精细化程度,做到盾构施工参数异常自动预警,设计并研发一种基于 B / S构架的盾构施工风险监控系统。首先,对土压平衡盾构施工过程中的安全风险管控需求进行总结,建...为提高土压平衡盾构施工过程中的风险管控力度,增加盾构施工参数控制的精细化程度,做到盾构施工参数异常自动预警,设计并研发一种基于 B / S构架的盾构施工风险监控系统。首先,对土压平衡盾构施工过程中的安全风险管控需求进行总结,建立系统的基本构架,确定系统的基本功能;其次,对盾构施工参数自动预警进行研究,提出参数预警的判断准则及判断方法,并将参数预警整合于盾构风险监控系统中,实现施工参数的自动预警;最后,通过缜密的算法及合理的界面设计完成风险监控系统的研发。系统的主要功能包括:盾构参数监控、参数分析、参数预警、风险管控、施工管理等。展开更多
Under single-satellite observation,the parameter estimation of the boost phase of high-precision space noncooperative targets requires prior information.To improve the accuracy without prior information,we propose a p...Under single-satellite observation,the parameter estimation of the boost phase of high-precision space noncooperative targets requires prior information.To improve the accuracy without prior information,we propose a parameter estimation model of the boost phase based on trajectory plane parametric cutting.The use of the plane passing through the geo-center and the cutting sequence line of sight(LOS)generates the trajectory-cutting plane.With the coefficient of the trajectory cutting plane directly used as the parameter to be estimated,a motion parameter estimation model in space non-cooperative targets is established,and the Gauss-Newton iteration method is used to solve the flight parameters.The experimental results show that the estimation algorithm proposed in this paper weakly relies on prior information and has higher estimation accuracy,providing a practical new idea and method for the parameter estimation of space non-cooperative targets under single-satellite warning.展开更多
文摘为提高土压平衡盾构施工过程中的风险管控力度,增加盾构施工参数控制的精细化程度,做到盾构施工参数异常自动预警,设计并研发一种基于 B / S构架的盾构施工风险监控系统。首先,对土压平衡盾构施工过程中的安全风险管控需求进行总结,建立系统的基本构架,确定系统的基本功能;其次,对盾构施工参数自动预警进行研究,提出参数预警的判断准则及判断方法,并将参数预警整合于盾构风险监控系统中,实现施工参数的自动预警;最后,通过缜密的算法及合理的界面设计完成风险监控系统的研发。系统的主要功能包括:盾构参数监控、参数分析、参数预警、风险管控、施工管理等。
基金supported in part by the National Natural Science Foundation of China(Nos.42271448,41701531)the Key Laboratory of Land Satellite Remote Sensing Application,Ministry of Natural Resources of the People’s Republic of China(No.KLSMNRG202317)。
文摘Under single-satellite observation,the parameter estimation of the boost phase of high-precision space noncooperative targets requires prior information.To improve the accuracy without prior information,we propose a parameter estimation model of the boost phase based on trajectory plane parametric cutting.The use of the plane passing through the geo-center and the cutting sequence line of sight(LOS)generates the trajectory-cutting plane.With the coefficient of the trajectory cutting plane directly used as the parameter to be estimated,a motion parameter estimation model in space non-cooperative targets is established,and the Gauss-Newton iteration method is used to solve the flight parameters.The experimental results show that the estimation algorithm proposed in this paper weakly relies on prior information and has higher estimation accuracy,providing a practical new idea and method for the parameter estimation of space non-cooperative targets under single-satellite warning.