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Three-dimensional path planning for unmanned aerial vehicle based on interfered fluid dynamical system 总被引:1,自引:0,他引:1
This paper proposes a method for planning the three-dimensional path for low-flying unmanned aerial vehicle(UAV) in complex terrain based on interfered fluid dynamical system(IFDS) and the theory of obstacle avoidance by the flowing stream. With no requirement of solutions to fluid equations under complex boundary conditions, the proposed method is suitable for situations with complex terrain and different shapes of obstacles. Firstly, by transforming the mountains, radar and anti-aircraft fire in complex terrain into cylindrical, conical, spherical, parallelepiped obstacles and their combinations, the 3D low-flying path planning problem is turned into solving streamlines for obstacle avoidance by fluid flow. Secondly, on the basis of a unified mathematical expression of typical obstacle shapes including sphere, cylinder, cone and parallelepiped, the modulation matrix for interfered fluid dynamical system is constructed and 3D streamlines around a single obstacle are obtained. Solutions to streamlines with multiple obstacles are then derived using weighted average of the velocity field. Thirdly, extra control force method and virtual obstacle method are proposed to deal with the stagnation point and the case of obstacles’ overlapping respectively. Finally, taking path length and flight height as sub-goals, genetic algorithm(GA) is used to obtain optimal 3D path under the maneuverability constraints of the UAV. Simulation results show that the environmental modeling is simple and the path is smooth and suitable for UAV. Theoretical proof is also presented to show that the proposed method has no effect on the characteristics of fluid avoiding obstacles. 相似文献
363.
DAI Yaoa * TAN Weib SUN Qia SUN Chang-qinga aDepartment of Mechanical Engineering Armored Force Engineering College Beijing China bDepartment of Materials Science Engineering Armored Force Engineering College Beijing China 《中国航空学报》2006,19(Z1)
Usually, it is very difficult to find out an analytical solution to thermal conduction problems during high temperature welding. Therefore, as an important numerical approach, the method of lines (MOLs) is introduced to solve the temperature field characterized by high gradients. The basic idea of the method is to semi-discretize the governing equation of the problem into a system of ordinary dif-ferential equations (ODEs) defined on discrete lines by means of the finite difference method, by which the thermal boundary condition with high gradients are directly embodied in formulation. Thus the temperature field can be obtained by solving the ODEs. As a numeri-cal example, the variation of an axisymmetrical temperature field along the plate thickness can be obtained. 相似文献
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RESEARCH ON DYNAMICAL BEHAVIOR AND DESIGN OF CONTROL PARAMETER FOR NONLINEAR MAGNETIC-CONTROL SYSTEM 总被引:1,自引:0,他引:1
Magneticlevitationtechnologyisanactivesegregatetechnology.Itisfitforhighspeedmo-tion,becauseitisfreeofthelimitofdampingforce.... 相似文献
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Friction compensation for low velocity control of hydraulic flight motion simulator: A simple adaptive robust approach 总被引:1,自引:1,他引:0
Low-velocity tracking capability is a key performance of flight motion simulator (FMS), which is mainly affected by the nonlinear friction force. Though many compensation schemes with ad hoc friction models have been proposed, this paper deals with low-velocity control without friction model, since it is easy to be implemented in practice. Firstly, a nonlinear model of the FMS middle frame, which is driven by a hydraulic rotary actuator, is built. Noting that in the low velocity region, the unmodeled friction force is mainly characterized by a changing-slowly part, thus a simple adaptive law can be employed to learn this changing-slowly part and compensate it. To guarantee the boundedness of adaptation process, a discontinuous projection is utilized and then a robust scheme is proposed. The controller achieves a prescribed output tracking transient performance and final tracking accuracy in general while obtaining asymptotic output tracking in the absence of modeling errors. In addition, a saturated projection adaptive scheme is proposed to improve the globally learning capability when the velocity becomes large, which might make the previous proposed projection-based adaptive law be unstable. Theoretical and extensive experimental results are obtained to verify the high-performance nature of the proposed adaptive robust control strategy. 相似文献
368.
摘要: 针对海洋机动目标跟踪监视问题,提出通过卫星相位重构调整进行机动目标搜索跟踪的监视策略,构建地理坐标系下机动目标航位预测模型及基于霍曼转移的卫星调相组网方式,并采用NSGA II算法进行优化求解,对比分析卫星重构组网前后的机动目标发现概率.仿真结果表明:在卫星能量消耗允许范围内进行重构组网,能够有效提升对机动目标的发现概率,为海洋机动目标的搜索跟踪问题提供了一定的方法支持. 相似文献
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从非局部连续介质理论出发,采用一种新的理性力学方法对裂纹前缘内聚应力分布规律进行研究。首先,在内聚裂纹表面引入非局部应力边界条件,从而将内聚区内表面诱发张力(非局部表面残余)与内聚应力等价联系起来;然后,利用能量平衡关系,得到仅与表面能密度相关的I型裂纹内聚力新的本构方程。最后,在推导结果的基础上,计算一个具体的脆性断裂算例研究内聚区内表面能与内聚应力随裂纹张开位移(COD)变化的分布规律。由计算结果发现,裂纹尖端应力奇异性消除,且应力最大值不一定出现在裂纹尖端,而是发生在裂纹尖端周围的内聚区内。 相似文献