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FAULT RISK ASSESSMENT OF UNDERWATER VEHICLE STEERING SYSTEM BASED ON VIRTUAL PROTOTYPING AND MONTE CARLO SIMULATION

机译:基于虚拟样机和蒙特卡洛模拟的水下转向系统故障风险评估

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摘要

Assessing the risks of steering system faults in underwater vehicles is a human-machine-environment (HME) systematic safety field that studies faults in the steering system itself, the driver's human reliability (HR) and various environmental conditions. This paper proposed a fault risk assessment method for an underwater vehicle steering system based on virtual prototyping and Monte Carlo simulation. A virtual steering system prototype was established and validated to rectify a lack of historic fault data. Fault injection and simulation were conducted to acquire fault simulation data. A Monte Carlo simulation was adopted that integrated randomness due to the human operator and environment. Randomness and uncertainty of the human, machine and environment were integrated in the method to obtain a probabilistic risk indicator. To verify the proposed method, a case of stuck rudder fault (SRF) risk assessment was studied. This method may provide a novel solution for fault risk assessment of a vehicle or other general HME system.
机译:评估水下航行器转向系统故障的风险是人机环境(HME)系统安全领域,其研究转向系统本身,驾驶员的人员可靠性(HR)和各种环境条件下的故障。提出了一种基于虚拟样机和蒙特卡洛仿真的水下航行器转向系统故障风险评估方法。建立并验证了虚拟转向系统原型,以纠正历史故障数据的不足。进行故障注入和仿真以获取故障仿真数据。采用了蒙特卡洛模拟,该模拟由于人类操作员和环境而综合了随机性。该方法综合了人,机器和环境的随机性和不确定性,从而获得了概率风险指标。为了验证所提出的方法,研究了舵舵故障(SRF)风险评估的情况。该方法可以为车辆或其他通用HME系统的故障风险评估提供新颖的解决方案。

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