Objective:This article summarizes the experience in the prevention and control of coronavirus disease 2019(COVID-19)epidemic in non-isolated areas in a general hospital.Methods:Based on refined management theory,we pr...Objective:This article summarizes the experience in the prevention and control of coronavirus disease 2019(COVID-19)epidemic in non-isolated areas in a general hospital.Methods:Based on refined management theory,we professionally developed the standards for prevention and control of COVID-19 in non-isolated areas,systematically implemented various prevention and control measures,performed gridding audits,effectively communicated among teams and between medical staff and patients assisted by information techniques,and reported results for quality improvement.Results:There was no hospital-acquired COVID-19 infections among staff in the hospital.The rates of mask-wearing,epidemiological history screening,and the medical supplies disinfection were all 100%in the hospital.The accuracy rate of mask-wearing of patients and their families was 73.79%and the compliance rate of their hand hygiene was 40.78%.Conclusion:Refined management strategies for the prevention and control of COVID-19 infection in non-isolated areas of the general hospital are effective.The accuracy rate of mask-wearing and hand hygiene compliance of patients and their families need to be further improved.展开更多
Multi-terminal high-voltage DC(MTDC)technology is a promising way to transmit large amounts of offshore wind power to the main grids.This paper proposes a hybrid MTDC scheme to integrate several offshore wind farms in...Multi-terminal high-voltage DC(MTDC)technology is a promising way to transmit large amounts of offshore wind power to the main grids.This paper proposes a hybrid MTDC scheme to integrate several offshore wind farms into the onshore power grids at different locations.A hybrid four-terminal HVDC system comprising two onshore line commutated converters(LCCs)and two voltage source converters(VSCs)connecting an offshore wind farm is constructed in PSCAD/EMTDC.A coordination control scheme based on the VSCs’AC voltage control and the LCCs’DC voltage droop control is designed to ensure smooth system operation and proper power sharing between onshore AC grids.The operational characteristics of the system are analyzed.In addition,a black start-up method without any auxiliary power supply for the VSCs is proposed.The transmission scheme is tested through simulations under various conditions,including start-up,wind speed variation,and the disconnection of one VSC or of one LCC.展开更多
The DC fault characteristics of voltage source converter based high voltage direct current(VSC-HVDC)systems are analyzed in this paper.The phenomenon whereby the capacitor on DC side discharges quickly during a DC fau...The DC fault characteristics of voltage source converter based high voltage direct current(VSC-HVDC)systems are analyzed in this paper.The phenomenon whereby the capacitor on DC side discharges quickly during a DC fault contributes to a large short-circuit fault current.Neither traditional DC breakers nor DC switches can cut off the fault current under this condition.A fast solid state DC breaker design method is proposed in this paper.This method is based on the fault current characteristics of the inverter in multi-terminal HVDC systems(MTDC),where a fault current appears at the natural zerocrossing point near the inverter.At this point,by coordinating the AC breakers near the rectifier,the DC breaker could reliably cut off the DC fault current and protect the system.A detailed model for this fast solid state DC breaker and its operation sequence are studied,based on this design method.Simulations modeling a five-terminal meshed DC grid and a fast DC breaker were carried out with PSCAD/EMTDC using this design method.The results from the simulations confirmed the validity of the design method.展开更多
文摘Objective:This article summarizes the experience in the prevention and control of coronavirus disease 2019(COVID-19)epidemic in non-isolated areas in a general hospital.Methods:Based on refined management theory,we professionally developed the standards for prevention and control of COVID-19 in non-isolated areas,systematically implemented various prevention and control measures,performed gridding audits,effectively communicated among teams and between medical staff and patients assisted by information techniques,and reported results for quality improvement.Results:There was no hospital-acquired COVID-19 infections among staff in the hospital.The rates of mask-wearing,epidemiological history screening,and the medical supplies disinfection were all 100%in the hospital.The accuracy rate of mask-wearing of patients and their families was 73.79%and the compliance rate of their hand hygiene was 40.78%.Conclusion:Refined management strategies for the prevention and control of COVID-19 infection in non-isolated areas of the general hospital are effective.The accuracy rate of mask-wearing and hand hygiene compliance of patients and their families need to be further improved.
基金This study was supported by National Natural Science Foundation of China(No.50937002,No.51190104)National HI-Tech R&D Program of China(No.2011AA05A112).
文摘Multi-terminal high-voltage DC(MTDC)technology is a promising way to transmit large amounts of offshore wind power to the main grids.This paper proposes a hybrid MTDC scheme to integrate several offshore wind farms into the onshore power grids at different locations.A hybrid four-terminal HVDC system comprising two onshore line commutated converters(LCCs)and two voltage source converters(VSCs)connecting an offshore wind farm is constructed in PSCAD/EMTDC.A coordination control scheme based on the VSCs’AC voltage control and the LCCs’DC voltage droop control is designed to ensure smooth system operation and proper power sharing between onshore AC grids.The operational characteristics of the system are analyzed.In addition,a black start-up method without any auxiliary power supply for the VSCs is proposed.The transmission scheme is tested through simulations under various conditions,including start-up,wind speed variation,and the disconnection of one VSC or of one LCC.
基金This work is supported by National Natural Science Foundation of China under the contract 51261130484by State Grid Corporation of China under the contract State Grid Research 304(2013).
文摘The DC fault characteristics of voltage source converter based high voltage direct current(VSC-HVDC)systems are analyzed in this paper.The phenomenon whereby the capacitor on DC side discharges quickly during a DC fault contributes to a large short-circuit fault current.Neither traditional DC breakers nor DC switches can cut off the fault current under this condition.A fast solid state DC breaker design method is proposed in this paper.This method is based on the fault current characteristics of the inverter in multi-terminal HVDC systems(MTDC),where a fault current appears at the natural zerocrossing point near the inverter.At this point,by coordinating the AC breakers near the rectifier,the DC breaker could reliably cut off the DC fault current and protect the system.A detailed model for this fast solid state DC breaker and its operation sequence are studied,based on this design method.Simulations modeling a five-terminal meshed DC grid and a fast DC breaker were carried out with PSCAD/EMTDC using this design method.The results from the simulations confirmed the validity of the design method.