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1.
The rate equations and the power evolution equations based on excited state absorption (ESA) and cooperative upconversion (CUC) of high concentration erbium-doped yttrium aluminum garnet (YAG) transparent ceramic waveguide amplifier are set up to analyze the effects of the pump power, active ion concentration and waveguide length on the amplifier gain and noise figure (NF). The numerical analysis predicts that with a pump power of 100mW, an active ion concentration of 1.0×1026 ion/m3 and a waveguide length of 3 cm, a small-signal gain of 30 dB and an NF of 5 dB can be achieved in the micro-chip amplifier. 相似文献
2.
CAI Cheng-tao ZHU Qi-dan YAN Yong-jie 《船舶与海洋工程学报》2005,4(4):43-46
Helicopter blade running elevation measurement is an important measure target in helicopter blade dynamic balance experimentation. The elevation influences the helicopter' s security and other performance capabilities. In testing, however, it has been difficult to measure the elevation when the rotor reaches high speeds. To get a simple, fast and highly accurate measurement system, photo electricity technology was applied to measuring the blade running elevation. Discussed is the measurement principle of blade running elevation, tire design of the measurement system and analysis of the measurement precision. 相似文献
3.
HANBing ZHAOGuo-liang 《船舶与海洋工程学报》2004,3(1):24-27
The course-keeping control of underactuated hovercraft with two aft propellers was considered. The control of the heading error and cross-track error was accomplished by the yaw torque merely in this case. The hovercraft dynamic model is nonlinear and underactuated. At first the Controllability of course-keeping control for hovercraft was proved, then a course-keeping control law was derived that keeps hovercraft heading constant as well as minimizes the lateral movement of hovercraft. The proposed law guarantees heading error and sway error all converge to zero exponentially. Simulation tests were carried out to illustrate the effectiveness of the proposed control law. For further research, the disturbance influence would be considered in the dynamic equations. 相似文献
4.
ZHANGJun-an XUEKai ZHANGJia-tai ZHANGQiang 《船舶与海洋工程学报》2004,3(1):87-90
At present ESG (Electrostatic Suspended Gyro) is the most precise inertia element in the world. The electrode bowl, which has direct effect on the precision of ESG, is a key part to ESG. Through the analysis of the function and characteristic of the electrode bowl in hollow rotor ESG and the present situation of new material development in the world, the alumina ceramic is regarded as the best material for the electrode bowl of hollow rotor ESG. By analyzing the present situation of alumina ceramic in the world, main technique requirements have been put forward for the alumina ceramic of ESG electrode bowl which is also fit for solid rotor ESG. 相似文献
5.
6.
Fuel economy comparison of conventional drive trains series and parallel hybrid electric step vans 总被引:1,自引:0,他引:1
S. B. Han Y. H. Chang Y. J. Chung E. Y. Lee B. Suh A. Frank 《International Journal of Automotive Technology》2009,10(2):235-240
A hybrid electric vehicle (HEV) is a vehicle that combines a conventional propulsion system with an on-board rechargeable
energy storage system to achieve better fuel economy than a conventional vehicle HEVs do not have limited ranges like battery
electric vehicles, which use batteries charged by an external source. The different propulsion power systems may have common
subsystems or components. The objective of this study is to compare the fuel economies of a conventional step van, a series
hybrid electric step van (HESV), and a parallel HESV by calculating the fuel consumption using the ADVISOR software by NREL.
We also showed the results of the vehicles in different driving cycles including the Central Business District bus cycles,
the New York City Cycle, and the US EPA City and Highway cycles. 相似文献
7.
Reliability-based sensitivity analysis of vehicle components with non-normal distribution parameters
Techniques from the perturbation method, fourth moment method, reliability-based design theory, and sensitivity analysis approach
are employed to present a practical and efficient method for testing the reliability sensitivity of vehicle components with
non-normal distribution parameters. With the condition that the first four moments of original random variables are known,
the reliability sensitivity theory and cases are researched using the presented numerical method. The variation regularities
of reliability sensitivity are obtained and the effects of design parameters on reliability of the vehicle components are
studied. The sophisticated formulation provided in this paper is easily amenable to computational procedures. The respective
program can be used to obtain the reliability sensitivity of vehicle components with non-normal distribution parameters accurately
and quickly. The results obtained are perfect and the solutions compared very well with those from Monte Carlo simulation.
The method presents a theoretic basis for the reliability design of the vehicle components. 相似文献
8.
H. P. Y. Hitch 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1981,10(4):319-332
The state-of-the-art in analysing a number of ground manoeuvring processes on aircraft is described. The mathematical models are as good as the data supplied to them. 相似文献
9.
尹守迁 《铁道劳动安全卫生与环保》1999,26(3):153-155
通过对铁道部无锡干部培训基地(以下简称培训基地)的生活污水的生物法处理效果观察,探析兼氧/好氧生物处理系统的脱氮除磷原理并对影响处理效果因素进行分析。 相似文献
10.
Y. -G. Kim C. -S. Jeon S. -W. Kim T. -W. Park 《International Journal of Automotive Technology》2013,14(6):903-911
The railway transportation system has much advantage in eco-friendliness, punctuality and safety compared to any other transportation system. Most of the railway system administrators have to control and operate under limited resources such as trains and facilities. It is necessary to control traveling time and energy consumption for efficient operation in the railway systems, because the board rate of passenger is inconstant with time variance. It is common that the shorter traveling time causes the greater energy consumption. In this study, a new optimization method considering operation time or energy consumption is proposed by using differential evolution algorithm and some cases are reviewed. The total energy change due to operation time variation are investigated by using the proposed optimization method for tangent and gradient track conditions. Both cases, the total energy decreases exponentially. However, because of gradient the total energy are saturated after a certain time for gradient track. 相似文献