Dynamic analysis method of safety risk of capacity control system based on Bayesian network and variable weight AHP
In view of the problem that the stepless capacity control system of reciprocating compressor has a high failure rate and great impact on the operation of the unit,and the operation risk assessment methods of the existing system are difficult to complete the real-time and quantitative risk assessment,a risk dynamic analysis method for the safety of stepless capacity control system was proposed,which integrates Bayes network and variable weight AHP.The Bayesian network model,which includes fault type,fault mode and monitoring signal,was established to obtain the real-time probability of fault occurrence.Based on variable weight analytic hierarchy process(AHP),a semi-quantitative analysis model of fault hazard was established to calculate the influence index of fault mode.Further,the fault risk calculation formula of FMEA method was modified,the probability of fault occurrence was introduced,and the calculation method of historical fault and real-time operation risk was proposed.Test verification was carried out using the actual fault case data.The results show that the new method can quantify the real-time and historical operating risks of computer units,and the normalized real-time operating risk threshold is set at 0.5 to determine the need for maintenance.The research results can provide quantitative indexes for the development of inspection and maintenance plans for reciprocating compressors and gas volume regulation systems.
stepless capacity control systemBayesian networkfault mode and effect analysisanalytic hierarchy processrisk dynamic analysis