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用于实现LTCC双平衡混频器的宽带巴伦设计 总被引:1,自引:0,他引:1
文章介绍了一种用于实现C频段LTCC(Low Temperature Co-fired Ceramic。低温共烧陶瓷)双平衡混频器的宽带巴伦设计。该巴伦是基于LTCC技术设计的多层结构巴伦,利用了LTCC多层技术的优点,采用宽边耦合线结构,可增加耦合线的耦合系数,从而可增加巴伦的带宽。设计的巴伦频率范围为5.575GHz-6.775GHz,具有插损小、平衡度好等优点,可应用于C频段LTCC7,K平衡混频器。文章介绍了Marchand巴伦的工作原理,描述了所设计巴伦的3D结构,并给出了设计仿真的结果。 相似文献
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欧洲民航将空中交通流量管理系统作为ATC辅助系统,为有限的空中交通管制容量提供一种科学、合理的管理机制,以防止潜在的具有危害性的过载,这与国际民航组织有关定义是相符的。欧洲流量管理系统的具体目标有两个:1.防止ATC超负荷;2.通过充分利用可用容量来优化空中交通流量。欧 相似文献
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Xiuqiang Jiang Shuang Li Xiangyu Huang 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(5):1342-1358
Supposing future orbiting and landing collaborative exploration mission as the potential project background, this paper addresses the issue of Mars entry integrated navigation using radio beacon, flush air data sensing system (FADS), and inertial measurement unit (IMU). The range and Doppler information sensed from an orbiting radio beacon, the dynamic pressure and heating data sensed from flush air data sensing system, and acceleration and attitude angular rate outputs from an inertial measurement unit are integrated in an unscented Kalman filter to perform state estimation and suppress the system and measurement noise. Computer simulations show that the proposed integrated navigation scheme can enhance the navigation accuracy, which enables precise entry guidance for the given Mars orbiting and landing collaborative exploration mission. 相似文献
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Linfeng Huang Jinsong Wang Yong Jiang Zhou Chen Kai Zhao 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
Ionospheric scintillation variations are studied using GPS measurements at the low latitude station of Shenzhen (22.59°N, 113.97°E), situated under the northern crest of the equatorial anomaly region, from the Chinese Meridian Project. The results are presented for data collected during the current phase of rising solar activity (low to high solar activity) from December 2010 to April 2014. The results show that GPS scintillation events were largely a nighttime phenomenon during the whole observation period. Scintillation events mainly occurred along the inner edge of the northern crest of the equatorial anomaly in China. The occurrence of scintillations in different sectors of the sky was also investigated, and the results revealed that it is more likely for the scintillations to be observed in the west sector of the sky above Shenzhen. During the present period of study, a total number of 512 total electron content (TEC) depletions and 460 lock loss events were observed. In addition, both of these events are likely to increase during periods of high solar activity, especially because the strong scintillations are often simultaneously accompanied by TEC depletions and lock losses by GPS receivers. 相似文献
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Guanwen Huang Bobin Cui Qin Zhang Pingli Li Wei Xie 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(5):1681-1696
The information of the satellite clock switching and performance variations on-orbit of Chinese BeiDou-2 Navigation System (BDS) is not available for the public. In order to detect the BDS satellite clock switching and performances variation, we analyzed the precise clock offset products with a total duration of 5?years every BDS satellite equipped four atomic clocks from four different manufactures from January 2013 to October 2017. Three important contributions are concluded as follows. (1) It is found that the average time of on-orbit operation for BDS satellite clocks is about 1–2?years. There have been 22 times of clock switching for BDS satellites, of which the C05 and C08 satellites have been switched to the fourth (last) atomic clock. (2) There are frequent phase adjustments for BDS on-orbit satellite clocks, and the frequency series is relatively stable. Furthermore, there are semi-annual sinusoid cycles in the frequency drift series of C06 and C09 satellites. (3) The performances of MEO satellite clocks perform better than the IGSO and GEO satellite clocks. The average ten-thousand frequency stability of BDS satellite clocks is about 1E-13, which is worse than that of GPS and Galileo but better than that of GLONASS. 相似文献