为比较不同船舶对同一碰撞危险的认识,提出一种主观的船舶碰撞危险度评价模型.在最近会遇距离(Distance to Closest Point of Approach,DCPA)和最近会遇时间(Time to Closest Point of Approach,TCPA)作参数的碰撞危险度计算模型的基础...为比较不同船舶对同一碰撞危险的认识,提出一种主观的船舶碰撞危险度评价模型.在最近会遇距离(Distance to Closest Point of Approach,DCPA)和最近会遇时间(Time to Closest Point of Approach,TCPA)作参数的碰撞危险度计算模型的基础上,加入船舶安全距离圈和最晚施舵时间等主观因素,建立新的碰撞危险度计算模型.利用该模型计算并比较安全距离圈大小和最晚施舵时间不同的船舶碰撞危险度.结果表明,安全距离圈大小和最晚施舵时间不同的船舶操纵者对同一会遇态势下碰撞危险的认识是不同的。展开更多
The equivalent two-port network model of a middle range wireless power transfer(WPT) system was presented based on strongly coupled multiple resonators. The key parameters of the WPT system include self-inductance, re...The equivalent two-port network model of a middle range wireless power transfer(WPT) system was presented based on strongly coupled multiple resonators. The key parameters of the WPT system include self-inductance, resistance, parasitic capacitance, mutual inductance and S-parameters of coils & resonators were analyzed. The impedance matching method was used to optimize load power and transmission efficiency of the multi-resonator WPT system, and the impedance matching method was realized through adjusting the distances between the coils and resonators. Experiments show that the impedance matching method can effectively improve load power and transmission efficiency for middle range wireless power transfer systems with multiple resonators, at distances up to 3 times the coil radius with efficiency more than 70% and load power also close to 3.5 W.展开更多
文摘为比较不同船舶对同一碰撞危险的认识,提出一种主观的船舶碰撞危险度评价模型.在最近会遇距离(Distance to Closest Point of Approach,DCPA)和最近会遇时间(Time to Closest Point of Approach,TCPA)作参数的碰撞危险度计算模型的基础上,加入船舶安全距离圈和最晚施舵时间等主观因素,建立新的碰撞危险度计算模型.利用该模型计算并比较安全距离圈大小和最晚施舵时间不同的船舶碰撞危险度.结果表明,安全距离圈大小和最晚施舵时间不同的船舶操纵者对同一会遇态势下碰撞危险的认识是不同的。
基金Project(61104088)supported by the National Natural Science Foundation of ChinaProject(12C0741)supported by Scientific Research Fund of Hunan Provincial Education Department,China
文摘The equivalent two-port network model of a middle range wireless power transfer(WPT) system was presented based on strongly coupled multiple resonators. The key parameters of the WPT system include self-inductance, resistance, parasitic capacitance, mutual inductance and S-parameters of coils & resonators were analyzed. The impedance matching method was used to optimize load power and transmission efficiency of the multi-resonator WPT system, and the impedance matching method was realized through adjusting the distances between the coils and resonators. Experiments show that the impedance matching method can effectively improve load power and transmission efficiency for middle range wireless power transfer systems with multiple resonators, at distances up to 3 times the coil radius with efficiency more than 70% and load power also close to 3.5 W.