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91.
在星光折射导航中,星光折射视线包含星光折射的大小和星光折射方向两种折射信息,传统的星光折射导航量测量只利用了星光折射大小的信息。但实际上,星光折射方向也是卫星位置矢量的函数,含有卫星位置的重要信息。针对上述问题,提出了一种同时使用两种折射信息的星光折射导航新方法,该方法以星光折射方向矢量为量测量。详细介绍了基于折射方向矢量地球卫星星光折射导航方法的量测量的获取和量测模型的建立,同时对不同影响因素对导航系统性能的影响进行分析。仿真结果表明,该方法的导航精度优于折射视高度和星光折射角两种传统的星光折射导航量测量。 相似文献
92.
分析了在战略产业发展过程中金融业服务滞后的各种表现,从战略产业经济结构调整本身、风险约束和金融宏观政策传导三个方面剖析了金融服务滞后的原因。以民用航空制造业的发展为例,用博弈论对金融在支持战略产业发展过程中的两难状况作了理论和实证分析,提出金融支持战略产业的发展是金融发展的最优选择的观点。最后从金融体系、资金投入和金融服务等方面提出相应的对策建议。 相似文献
93.
本文给出了系(部)工作评价的AHP模型,并对模型进行求解,说明了该模型的有效性。 相似文献
94.
文章针对舰载无人机在着舰回收过程中,由于海浪颠簸对引导系统高度测量严重干扰的问题,利用四元数导航算法提出了一种新型的舰载无人机回收系统测高方法。首先采用捷联惯导测高系统设计方案,同时利用微机械的惯性测量组件,提高系统的可靠性和集成度;然后,利用四元数导航算法求取各个姿态方位参数,再用旋转矢量法补偿不可交换性误差,推导出舰船甲板的升沉高度实际值,为克服传统纯惯导测量算法的不稳定性,提出一种具有三阶阻尼特性的互补滤波器算法,并在测量系统输入端加入巴特沃斯滤波器去除杂波干扰,得到需要测量的高度变化值。最后,通过对比传统纯惯性方法下测高系统输出值、加入真实气压表互补滤波后测高系统输出值和加入零均值阻尼信号互补滤波测高系统输出值,三种不同情况下的仿真结果,验证了所提方案的有效性。 相似文献
95.
96.
矢量跟踪是一种将全球导航卫星系统(GNSS)接收机的信号跟踪与导航解算融为一体的跟踪算法。传统的基于矢量延迟/频率锁定环(VDFLL)的跟踪算法普遍采用延迟锁定环(DLL)和锁频环(FLL)鉴别器计算伪距和伪距率偏差观测量,由于锁频环鉴别器存在近似误差和一步延迟效应,在高动态环境下容易造成环路失锁。从直接估计卫星信号特征参数的角度出发,基于中频信号模型构建码相位和载波多普勒的极大似然代价函数,采用非迭代估计算法得到各通道码相位和多普勒频移的估计偏差,转换为卡尔曼滤波器的观测矢量,提出一种基于极大似然估计器(MLE)的矢量跟踪算法。理论分析和仿真结果表明:新算法结合了极大似然估计和矢量跟踪的优点,克服了FLL的延迟效应,与基于VDFLL的矢量环路相比,高动态环境下的跟踪稳定性更好,可以对被遮挡的卫星保持持续的跟踪。 相似文献
97.
The main goal of this paper is to study the characteristics of regression rate of solid grain during thrust regulation process. For this purpose, an unsteady numerical model of regression rate is established. Gas–solid coupling is considered between the solid grain surface and combustion gas.Dynamic mesh is used to simulate the regression process of the solid fuel surface. Based on this model, numerical simulations on a H2O2/HTPB(hydroxyl-terminated polybutadiene) hybrid motor have been performed in the flow control process. The simulation results show that under the step change of the oxidizer mass flow rate condition, the regression rate cannot reach a stable value instantly because the flow field requires a short time period to adjust. The regression rate increases with the linear gain of oxidizer mass flow rate, and has a higher slope than the relative inlet function of oxidizer flow rate. A shorter regulation time can cause a higher regression rate during regulation process. The results also show that transient calculation can better simulate the instantaneous regression rate in the operation process. 相似文献
98.
99.
Yuming Fu Hui Liu Lingzhi Shao Minjuan Wang Yu A. Berkovich A.N. Erokhin Hong Liu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2013
Vegetable cultivation plays a crucial role in dietary supplements and psychosocial benefits of the crew during manned space flight. Here we developed a ground-based prototype of horn-type sequential vegetable production facility, named Horn-type Producer (HTP), which was capable of simulating the microgravity effect and the continuous cultivation of leaf–vegetables on root modules. The growth chamber of the facility had a volume of 0.12 m3, characterized by a three-stage space expansion with plant growth. The planting surface of 0.154 m2 was comprised of six ring-shaped root modules with a fibrous ion-exchange resin substrate. Root modules were fastened to a central porous tube supplying water, and moved forward with plant growth. The total illuminated crop area of 0.567 m2 was provided by a combination of red and white light emitting diodes on the internal surfaces. In tests with a 24-h photoperiod, the productivity of the HTP at 0.3 kW for lettuce achieved 254.3 g eatable biomass per week. Long-term operation of the HTP did not alter vegetable nutrition composition to any great extent. Furthermore, the efficiency of the HTP, based on the Q-criterion, was 7 × 10−4 g2 m−3 J−1. These results show that the HTP exhibited high productivity, stable quality, and good efficiency in the process of planting lettuce, indicative of an interesting design for space vegetable production. 相似文献
100.
Conceptual design of a bioregenerative life support system containing crops and silkworms 总被引:1,自引:0,他引:1
Enzhu Hu Sergey I. Bartsev Hong Liu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2010
This article summarizes a conceptual design of a bioregenerative life support system for permanent lunar base or planetary exploration. The system consists of seven compartments – higher plants cultivation, animal rearing, human habitation, water recovery, waste treatment, atmosphere management, and storages. Fifteen kinds of crops, such as wheat, rice, soybean, lettuce, and mulberry, were selected as main life support contributors to provide the crew with air, water, and vegetable food. Silkworms fed by crop leaves were designated to produce partial animal nutrition for the crew. Various physical-chemical and biological methods were combined to reclaim wastewater and solid waste. Condensate collected from atmosphere was recycled into potable water through granular activated carbon adsorption, iodine sterilization, and trace element supplementation. All grey water was also purified though multifiltration and ultraviolet sterilization. Plant residue, human excrement, silkworm feces, etc. were decomposed into inorganic substances which were finally absorbed by higher plants. Some meat, ingredients, as well as nitrogen fertilizer were prestored and resupplied periodically. Meanwhile, the same amount and chemical composition of organic waste was dumped to maintain the steady state of the system. A nutritional balanced diet was developed by means of the linear programming method. It could provide 2721 kcal of energy, 375.5 g of carbohydrate, 99.47 g of protein, and 91.19 g of fat per capita per day. Silkworm powder covered 12.54% of total animal protein intakes. The balance of material flows between compartments was described by the system of stoichiometric equations. Basic life support requirements for crews including oxygen, food, potable and hygiene water summed up to 29.68 kg per capita per day. The coefficient of system material closure reached 99.40%. 相似文献