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821.
This article presents a method named pseudo-inverse to solve the optimal thrust allocation of dynamic positioning (DP) system,
proposes to optimally determine the azimuth angle of thrusters instead of man-control or semi-auto control, and combines with
the pseudo-inverse methods to get the optimal solutions for dynamic positioning control system. It is able to greatly reduce
the risk of manual mode. Three different kinds of modes are proposed and detailedly illuminated, and can be used to solve
much more complex nonlinear constraint problems, such as typical forbidden vector boundary. Several illustrative examples
are provided to demonstrate the effectiveness and correctness of the proposed thrust allocation modes. 相似文献
822.
Singfat Chu 《Transportation》2011,38(2):215-226
The Vehicle Quota System manages vehicle ownership in Singapore by making the procurement of a Certificate of Entitlement
(COE) a prerequisite for the registration of a new vehicle. The procurement is done during uniform price auctions of quotas
of COEs currently held on a twice-a-month schedule. The auction format which started out as sealed bids in May 1990 changed
to open bids in July 2001. This paper uses a regression model framework to investigate if this shift in auction format has
resulted in lower COE premium volatility and a better reflection of demand and supply forces. The empirical results are pertinent
to transport policy analysis. A suggestion in the form of incentives for early bids is also made to improve the efficiency
of the open bids auction. 相似文献
823.
Omer Kemal Kinaci 《船舶与海洋工程学报》2016,15(2):136-143
Aircraft flying close to the ground benefit from enhanced efficiency owing to decreased induced drag and increased lift. In this study, a mathematical model is developed to simulate the takeoff of a wing near the ground using an Iterative Boundary Element Method (IBEM) and the finite difference scheme. Two stand-alone sub-codes and a mother code, which enables communication between the sub-codes, are developed to solve for the self-excitation of the Wing-In-Ground (WIG) effect. The aerodynamic force exerted on the wing is calculated by the first sub-code using the IBEM, and the vertical displacement of the wing is calculated by the second sub-code using the finite difference scheme. The mother code commands the two sub-codes and can solve for the aerodynamics of the wing and operating height within seconds. The developed code system is used to solve for the force, velocity, and displacement of an NACA6409 wing at a 4° Angle of Attack (AoA) which has various numerical and experimental studies in the literature. The effects of thickness and AoA are then investigated and conclusions were drawn with respect to generated results. The proposed model provides a practical method for understanding the flight dynamics and it is specifically beneficial at the pre-design stages of a WIG effect craft. 相似文献
824.
The properties and electronic structure of Fe under pressures of 0–30GPa have been studied by first principles employing the
density functional theory (DFT), the ultra-soft pseudo-potentials (USPP) and the generalized gradient approximation (GGA).
The calculating results show that there is a structural transition from magnetic body-centered cubic (bcc) to nonmagnetic
hexagonal-close-packed (hcp) structure for Fe around 11GPa pressure. There is a pseudogap both in the density of states (DOS)
for bcc and hcp Fe. The pseudogap of bcc Fe is deeper and wider than that of hcp Fe. The elastic modulus is obtained by Voigt-Reuss-Hill
averaging scheme. The results indicate that the elastic properties of bcc Fe enhance with pressure except for elastic stiffness
constant C
11, shear modulus G and elastic modulus E at the transition pressure, while the elastic properties of hcp Fe increase linearly with pressure. Magnetic bcc Fe is ductile,
and hcp Fe becomes ductile from brittle around 25GPa. 相似文献
825.
Peter Muirhead 《WMU Journal of Maritime Affairs》2011,10(2):241-242
826.
杨明豪 《上海交通大学学报(英文版)》2011,16(5):586-592
This paper aims at analyzing the security issues that lie in the application layer (AL) protocols when users connect to the
Internet via a wireless local area network (WLAN) through an access point. When adversaries launch deauthentication flood
attacks cutting users’ connection, the connection managers will automatically research the last access point’s extended service
set identifier (ESSID) and then re-establish connection. However, such re-connection can lead the users to a fake access point
with the same ESSID set by attackers. As the attackers hide behind users’ access points, they can pass AL’s authentication
and security schemes, e.g. secure socket layer (SSL). We have proved that they can even spy on users’ account details, passwords,
data and privacy. 相似文献
827.
Yuan Chen Rongmin Zhang Xingyu Zhao Jun Gao 《Journal of Marine Science and Technology》2016,21(4):624-650
Computed-torque controller plus fuzzy inverse desired trajectory compensation technique based on robust adaptive fuzzy observer is proposed to control underwater vehicle subject to uncertainties. A fuzzy inverse desired trajectory compensator is developed as a nonlinear filter at input trajectory level outside the control loop to address the issue of unavailable normalizing factor. A robust adaptive state observer with loose constraint on the position of the uncertainty function is proposed to evaluate the unavailable states. Numerical simulation results of regulation performance demonstrate that the observer solves the problem of strict constraint conditions on position uncertainties. Comparisons of tracking performance between the proposed control method and computed-torque controller are performed. The results confirm that compensation at the input trajectory offers better position tracking performance and easier practical implementation than other fuzzy compensation techniques at joint torque level. The proposed control approach is simulated and its efficiency is validated through the simulation of an underwater vehicle. 相似文献
828.
Fishing is a major local industry in Malaysia, particularly in rural areas. However, the rapidly increasing price of fuel is seriously affecting the industry’s viability. At present, outboard petrol engines are the preferred choice for use in small-scale fishing boats because they deliver the advantages of high speed and low weight, they are easy to install, and they use minimal space. Petrol outboard engines are known to consume a greater amount of fuel than inboard diesel engines, but installing diesel engines with conventional submerged propellers in existing small-scale fishing boats is not economically viable because major hullform modifications and extra expenditure are required to achieve this. This study describes a proposal to enable reductions in fuel consumption by introducing the combined use of a diesel engine and surface-piercing propeller (SPP). An analysis of fuel consumption reduction is presented, together with an economic feasibility study. Resulting data reveal that the use of the proposed modifications would save 23.31 liters of fuel per trip (40.75 %) compared to outboard motors, equaling annual savings of RM 3962 per year. 相似文献
829.
This paper presents the results of an experimental investigation dealing with the effect of bow overhang extensions on the quantity of shipping water over the foredeck in case of ships advancing in regular head waves. To perform this investigation, a series of free-running tests was conducted in regular waves using an experimental model of a multipurpose cargo ship to quantify the amount of shipping water. The tests were performed on five bow overhang variants with several combinations of wavelength and ship speed conditions. It was observed that the quantity of shipping water was affected by some parameters such as wavelength, ship speed, and bow shape in terms of an overhang extension. The results show the significant influence of an overhang extension, which is associated with the bow flare shape, on the occurrence of water shipping. These results involve the combined incoming regular waves and model speed. 相似文献
830.
Mortaza Azizi Yengejeh Hamid Mehdigholi Mohammad Saeed Seif 《Journal of Marine Science and Technology》2016,21(3):458-470
Racing catamarans use aerodynamic alleviation concept which in existing extreme ground effect significantly enhances the performance. Beside design measures, controlling strategies may be employed as convenient solutions to improve the performance and address concerns regarding poor stability in these crafts. Being of substantial importance for a racing catamaran to reach the final speed as soon as possible, this study attempts to find the optimal form of changing the drive angle (as control variable) to minimize its acceleration time. In this regard, a mathematical model is developed for forward acceleration phase of these catamarans based on empirical and theoretical methods. Then the formulation and solution algorithm for the time-optimal problem are described according to an indirect method. Results for a representative racing craft have been presented in uncontrolled and controlled conditions. Problem in controlled condition has been solved without and with a predefined constraint regarding stability margin. Optimal controlling of the drive angle without stability constraint during the acceleration results in 40 % reduction in time required to reach the speed of 110 kn and 14 % reduction in resistance at this speed in comparison to the uncontrolled case. Addition of the stability constraint changes optimal solution for drive angle and causes craft trim angle follow a decreasing trend at higher speeds. 相似文献