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一种基于运载火箭遥外测系统的天线切换器的设计
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作者 李思衡 赵广东 +1 位作者 赵雯娴 臧照祥 《通信技术》 2019年第8期2026-2031,共6页
一种基于运载火箭遥外测系统的微波天线切换器的设计。在运载火箭执行一箭多星任务时,搭载星与主星分离时,由于火箭调姿,地面测控站无法有效接收到箭上遥外测微波发射信号,天线切换器根据飞行弹道及卫星分离时间适时切换选择发射天线,... 一种基于运载火箭遥外测系统的微波天线切换器的设计。在运载火箭执行一箭多星任务时,搭载星与主星分离时,由于火箭调姿,地面测控站无法有效接收到箭上遥外测微波发射信号,天线切换器根据飞行弹道及卫星分离时间适时切换选择发射天线,使得地面测控系统始终能够接收到有效的测控信号。火箭起飞信号作为切换器控制计时的起始时间,并根据不同的搭载星发射任务装订控制切换时间。同时具有较宽的切换信号带宽及较小的转发信号功率损耗。通过与遥外测系统的对接表明,切换器能够按照既定要求完成主副天线的切换。 展开更多
关键词 运载火箭 遥外测系统 天线切换器
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Multipoint Infrared Telemetry System for Measuring the Piston Temperature in Internal Combustion Engines 被引量:5
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作者 刘金祥 魏春源 +1 位作者 张卫正 郭良平 《Journal of Beijing Institute of Technology》 EI CAS 2002年第4期346-349,共4页
A high precision, high antijamming multipoint infrared telemetry system was developed to measure the piston temperature in internal combustion engine. The temperature at the measuring point is converted into correspon... A high precision, high antijamming multipoint infrared telemetry system was developed to measure the piston temperature in internal combustion engine. The temperature at the measuring point is converted into corresponding voltage signal by the thermo-couple first. Then after the V/F stage, the voltage signal is converted into the frequency signal to drive the infrared light-emitting diode to transmit infrared pulses. At the receiver end, a photosensitive audion receives the infrared pulses. After conversion, the voltage recorded by the receiver stands for the magnitude of temperature at the measuring point. Test results of the system indicate that the system is practical and the system can perform multipoint looping temperature measurements for the piston. 展开更多
关键词 PISTON temperature measurement infrared telemetry
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Improved strategy for estimating stem volume and forest biomass using moderate resolution remote sensing data and GIS 被引量:10
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作者 Arief Wijaya Sandi Kusnadi +1 位作者 Richard Gloaguen Hermann Heilmeier 《Journal of Forestry Research》 SCIE CAS CSCD 2010年第1期1-12,I0001,共13页
This study presents the utility of remote sensing (RS), GIS and field observation data to estimate above ground biomass (AGB) and stem volume over tropical forest environment. Application of those data for the mod... This study presents the utility of remote sensing (RS), GIS and field observation data to estimate above ground biomass (AGB) and stem volume over tropical forest environment. Application of those data for the modeling of forest properties is site specific and highly uncertain, thus further study is encouraged. In this study we used 1460 sampling plots collected in 16 transects measuring tree diameter (DBH) and other forest properties which were useful for the biomass assessment. The study was carded out in tropical forest region in East Kalimantan, Indo- nesia. The AGB density was estimated applying an existing DBH - biomass equation. The estimate was superimposed over the modified GIS map of the study area, and the biomass density of each land cover was calculated. The RS approach was performed using a subset of sample data to develop the AGB and stem volume linear equation models. Pearson correlation statistics test was conducted using ETM bands reflectance, vegetation indices, image transform layers, Principal Component Analysis (PCA) bands, Tasseled Cap (TC), Grey Level Co-Occurrence Matrix (GLCM) texture features and DEM data as the predictors. Two linear models were generated from the significant RS data. To analyze total biomass and stem volume of each land cover, Landsat ETM images from 2000 and 2003 were preprocessed, classified using maximum likelihood method, and filtered with the majority analysis. We found 158±16 m^3.ha^-1 of stem volume and 168±15 t.ha^-1 of AGB estimated from RS approach, whereas the field measurement and GIS estimated 157±92 m^3.ha^-1 and 167±94 t.ha^-1 of stem volume and AGB, respectively. The dynamics of biomass abundance from 2000 to 2003 were assessed from multi temporal ETM data and we found a slightly declining trend of total biomass over these periods. Remote sensing approach estimated lower biomass abundance than did the GIS and field measurement data. The earlier approach predicted 10.5 Gt and 10.3 Gt of total biomasses in 2000 and 2003, while the later estimated 11.9 Gt and 11.6 Gt of total biomasses, respectively. We found that GLCM mean texture features showed markedly strong correlations with stem volume and biomass. 展开更多
关键词 above ground biomass stem volume remote sensing GIS field observation data
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