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531.
开发新型动力系统和智能控制策略是解决节能减排的重要技术方向。本文首先对混合动力系统的配置和拓扑结构进行归类与比较,对控制策略中涉及的智能算法进行归纳和总结;其次,对新型动力船舶在动力系统和控制算法使用情况进行阐释;最后,从不同角度对混合动力系统以及能量管理系统的发展趋势进行展望,为绿色船舶混合动力系统开发以及能量管理系统的研发提供了参考依据。  相似文献   
532.
《中国航空学报》2023,36(7):147-159
For high performance manufacturing of micro parts and features, a hybrid chemical modification strategy is proposed to decrease critical energy barrier of mechanical removal of hard and brittle crystal material by refining localized machining condition. The strategy, namely UV-light and IR-laser hybrid chemical modification (UVIR-CM) strategy, includes two steps, an ultraviolet light (UV-light) catalytic advanced oxidation and an infrared laser (IR-laser) assisted selective modification based on Fenton liquid–solid reaction for monocrystalline silicon. The modification effects of UVIR-CM strategy were investigated by surface morphology micro-observation, cross-section transmission electron microscopy (TEM) observation, Raman spectroscopy analysis and nanoindentation test. Experimental results demonstrated that varied degrees of laser texturing appeared on different strategy samples’ IR-laser scanned area. And the IR-laser thermal damage has been successfully inhibited due to the refraction and reflection of energy by bubbles in liquid medium. But for the UVIR-CM strategy, a uniform and amorphous silicate layer is detected in a certain boundary. The UV-light promotes oxidation cycle ability of the chemical solution and ensures sufficient oxide modified layer for subsequent step. Attributing to synergism of photochemical, photothermal and kinetic effects induced by IR-laser, the modified layer displays layered structure with about 600 nm thickness, (2.7 ± 0.60) GPa nanohardness, and (93.7 ± 22.9) GPa indentation modulus. And the layered structure is amorphous layer, nanocrystal and micro-twins layer from the surface to the interior of sample. Consequently, it reveals that the subsequent mechanical removal will become easy due to decreasing energy barrier of monocrystalline silicon in selective area. Meanwhile, its original excellent mechanical properties also are maintained under a certain depth. The results contribute to develop a novel combined micro-machining technology to achieve collaborative manufacturing of structure shape and surface integrity for micro parts and feature.  相似文献   
533.
After deployment from a rocket, a CubeSat is detumbled using magnetorquer rods bringing the norm to the point where the reaction wheels take over to reduce the angular velocity to null. Therefore, utilizing reaction wheels for satellite detumbling at higher initial velocities is vital but they are heavy and occupy significant space on a spacecraft having challenging control. To address this challenge, this paper features a disruptive approach that conducts the control only by the PCB-integrated magnetorquers with various geometries using a diverse non-unity track width ratio. The trace widths are parametrized such that the optimal torque to power dissipation ratio is investigated. The optimizations are then simulated for various geometric distributions and validated through comprehensive measurement setups that establish a framework for selecting the best-case coil configuration according to mission requirements. The detumbling rates of multiple asymmetric coil configurations are compared with the embedded designs in published literature and state of the art. It is found that the proposed asymmetric embedded magnetorquers can detumble the vehicle at high initial angular velocities. Lastly, the simulation results of thermal analysis are validated for selecting the application-specific optimal coils configuration. At the end, the proposed system is compared with the embedded magnetorquers available in the literature and commercial attitude control systems.  相似文献   
534.
The main task of this work is to design a control system for a small tail-sitter Unmanned Aerial Vehicle(UAV) during the transition process. Although reasonable control performance can be obtained through a well-tuned single PID or cascade PID control architecture under nominal conditions, large or fast time-varying disturbances and a wide range of changes in the equilibrium point bring nonlinear characteristics to the transition control during the transition process, which leads to control prec...  相似文献   
535.
低轨卫星星座的拓扑设计是天地一体化网络部署中较为重要的一环。在低轨卫星网络中,如何设计星座拓扑来提升卫星网络的稳定性与传输性能,是亟待解决的问题。提出一种基于轨道覆盖带方法的低轨持续全覆盖卫星星座设计方法,通过该方法构建低轨卫星星座,满足覆盖性能,可有效减少卫星切换的次数。基于构建的星座拓扑,制定邻轨k最近邻星的反向缝建链策略,优化设计链路长度和链路持续时长,获取网络传输性能与稳定性的平衡。仿真结果表明:通过上述方法设计出的星座,在满足对地持续全覆盖性能的情况下,相较于轨道覆盖带方法切换次数减少10%;邻轨k最近邻星策略相较于最短建链策略,拓扑稳定性能提升79.62%,使网络拓扑稳定性与传输性能达到更优的平衡。  相似文献   
536.
摘要:多波束卫星发射机的成本很高,同时地面小区的通信需求和通信优先级一直处在动态变化中。通过研究一种动态波束跳跃策略,实现在卫星资源受限和较少发射机数量约束下的广域覆盖和按需服务。区别于传统的分簇波束跳变思想,为了提高卫星系统的频谱效率,考虑在整个频率带宽上应用全局波束跳变。因此考虑在共信道干扰背景下,提出一种新型服务质量指标来衡量波束跳变结果。在卫星资源有限的情况下,各波束提供的通信容量不能满足地面小区的业务请求,基于粒子群算法选择的波束跳动图案,提出了一种自适应波束功率分配算法。该算法通过优先级加权,最小化波束业务容量需求差值,进而提高服务质量水平。最后,通过仿真验证了所提算法的性能优越性。  相似文献   
537.
针对大气环境监测卫星地方时的控制和优化问题,从太阳同步轨道卫星的地方时漂移规律入手,建立了地方时漂移估计模型,给出了通过改变倾角来调节地方时漂移的控制策略。在此基础上,采用遗传算法对控制策略进行了优化,讨论了相关算子的选择,最终得到了燃料有限情况下的最优控制曲线。优化结果表明:不限燃料情况下,大气环境监测卫星可通过寿命内一次倾角控制实现小于6.6 min的地方时偏差。此外,为了保证地方时偏差小于15 min的指标要求,卫星至少需要进行一次0.07°的倾角控制。  相似文献   
538.
Aimed at complex distributed no-fly zones avoidance problems, a novel adaptive lateral reentry guidance algorithm is proposed. Firstly, by introducing the improved attractive and repulsive potential fields, an improved artificial potential field method is developed. Combined with the proposed judgment criterion for whether a no-fly zone has been avoided, the proposed improved artificial potential field method effectively solves the reference heading angle determination problem under the constrai...  相似文献   
539.
马伟  肖嵩  周诠 《空间电子技术》2023,20(5):118-124
低轨星座网络流规划方法是提升大型星座网络性能的关键技术。针对现有低轨星座网络流规划方法手段单一,难以兼顾全局性能优化与卫星自主灵活性等问题,研究提出了一种基于组合策略的低轨星座网络流规划方法,首先根据业务特点对网络流进行分类映射,针对6类映射业务的QoS差异,分别采用集中式、分布式和源端路由等路由控制策略;在此基础上将星座网络流规划问题抽象为求解带宽约束下的多源单汇网络最大流和多源多汇网络最大流问题,分别采用负载均衡路由和多约束QoS路由算法;对基于组合策略和单一策略的星座网络流规划方法进行了仿真分析,结果表明组合策略比集中式的传输时延低约20ms,丢包率低约9%,比分布式的带宽利用率高约42%,可有效提升星座网络性能,能够更好满足不同场景及需求。  相似文献   
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