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排序方式: 共有1397条查询结果,搜索用时 31 毫秒
331.
针对弹道再入目标轨迹跟踪问题,提出基于混合建议分布的平方根容积求积采样粒子滤波(HPD-SRCQSPF)算法,该算法以混合建议分布为框架,由两个基本建议分布组成。其中一个基本建议分布为先验分布,另一个基本建议分布为平方根容积求积卡尔曼滤波估计后的值。该混合建议分布与真实的后验分布很接近,因此有着高效性、高精度等特点。仿真结果表明,对于弹道再入目标轨迹跟踪模型,相比于标准粒子滤波(SPF)算法和平方根容积求积粒子滤波(SRCQPF)算法,HPD-SRCQSPF算法可以在较低运算负载的情况下获得更好的跟踪性能。特别是在弹道目标变轨机动的情况时,所提出算法的性能增益更为显著。 相似文献
332.
针对立方星在能量来源严重受限条件下如何提高太阳能利用率的难题,提出一种适用于立方星的集中供电式空间微电源架构(EPS),并设计基于改进粒子群优化算法的最大功率点跟踪(MPPT)控制策略来提升能量转换效率。首先,推导太阳电池阵列的数学模型,并根据太阳电池阵列的工作特性,提出电源系统最大功率点跟踪控制的物理系统实现结构。其次,设计基于改进粒子群优化(PSO)的最大功率点跟踪控制算法,并进行了数学仿真校验。最后,对所设计的电源系统架构进行了硬件实现和试验验证。地面试验结果表明,电源系统的太阳能最大转换效率可达95.5%。该电源系统成功应用于世界首颗12U立方星“翱翔之星”的飞行试验,在轨数据表明电源系统工作状态良好,为微纳卫星电源系统的设计提供了有益参考。 相似文献
333.
Plug-and-play technology is an important direction for future development of spacecraft and how to design controllers with less communication burden and satisfactory performance is of great importance for plug-and-play spacecraft. Considering attitude tracking of such spacecraft with unknown inertial parameters and unknown disturbances, an event-triggered adaptive backstepping controller is designed in this paper. Particularly, a switching threshold strategy is employed to design the event-triggering mechanism. By introducing a new linear time-varying model, a smooth function, an integrable auxiliary signal and a bound estimation approach, the impacts of the network-induced error and the disturbances are effectively compensated for and Zeno phenomenon is successfully avoided. It is shown that all signals of the closed-loop system are globally uniformly bounded and both the attitude tracking error and the angular velocity tracking error converge to zero. Compared with conventional control schemes, the proposed scheme significantly reduces the communication burden while providing stable and accurate response for attitude maneuvers. Simulation results are presented to illustrate the effectiveness of the proposed scheme. 相似文献
334.
Spherical mobile robot has compact structure, remarkable stability, and flexible motion,which make it have many advantages over traditional mobile robots when applied in those unmanned environments, such as outer planets. However, spherical mobile robot is a special highly under-actuated nonholonomic system, which cannot be transformed to the classic chained form. At present, there has not been a kinematics-based trajectory tracking controller which could track both the position states and the attitude states of a spherical mobile robot. In this paper, the four-state(two position states and two attitude states) trajectory tracking control of a type of spherical mobile robot driven by a 2-DOF pendulum was studied. A controller based on the shunting model of neurodynamics and the kinematic model was deduced, and its stability was demonstrated with Lyapunov's direct method. The control priorities of the four states were allocated according to the magnification of each state tracking error in order to firstly ensure the correct tracking of the position states. The outputs(motor speeds) of the controller were regulated according to the maximum speeds and the maximum accelerations of the actuation motors in order to solve the speed jump problem caused by initial state errors, and continuous and bounded outputs were obtained. The effectiveness including the anti-interference ability of the proposed trajectory tracking controller was verified through MATLAB simulations. 相似文献
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单黎明 《空间控制技术与应用》2012,38(3):58-62
太阳跟踪定位技术广泛应用于能源、气象和航天等领域,系统全面地对相关方法进行分类和阐述,并对多孔复用、太阳光纤导入等较新应用进行了分析,最后总结了该领域内相关技术发展的瓶颈问题,展望了未来的研究方向. 相似文献
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