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1.
为满足大口径地面射电望远镜的高精度要求,开展射电望远镜热影响研究,保持结构的热稳定性,对提高望远镜指向精度有重要意义。以改造后南山26 m天线为研究对象,利用FEMAP软件建立座架结构模型,设定边界条件,得到某年6月4日全天各时刻天线座架上的温度场分布,将温度场结果与结构耦合,得到热变形,建立了温度测量系统,与仿真结果相比,当天局部最高温度可达31.33℃,最大温差可达10℃,最大位移量可达1.8 mm,与实测结果变化规律基本一致。分析座架温度分布规律及其变形影响,为后期天线的温度补偿和结构优化提供参考依据。  相似文献   

2.
易乐天  许谦  王娜 《天文学报》2022,63(2):17-51
中国科学院新疆天文台25 m南山射电望远镜(25 m NSRT)受日照导致天线结构温度不均匀,其指向精度和效率均有一定程度的损失.为研究25 m NSRT日照下的热力学特性,构建了晴空下射电望远镜热环境参数和热力学有限元模型,考虑了射电望远镜背架、面板等结构件对光线的反射和遮挡作用,通过比较25 m NSRT典型观测工况下各构件的平均温度、均方根温差、单位温差特征距离等特性参数,发现各部件热容量的差异是天线部件间存在大尺度温差现象的主要原因;分析了各类俯仰角和太阳照射角下天线背架结构的温度分布特征,表明日照区域的背架结构温度呈近似线性分布,平均梯度可达0.25℃·m-1.  相似文献   

3.
针对大口径射电望远镜主反射面在日照作用下产生温度梯度及形变问题,建立了完整的温度测量及精度评估的系统。在特定的测量条件下,利用红外热像仪测量了望远镜主反射面的温度,获得了不同时刻的温度分布情况,并得到最大温差为7.8℃。采用全息法分析主反射面的精度变化情况,得到由于温度变化导致的最大误差为0.33 mm。结果表明:温度对望远镜主反射面的精度影响较大,需采取合适的测试系统实时监测温度,并调整主反射面板以提高精度。  相似文献   

4.
天线反射面的面形精度直接影响天线效率, 是望远镜的关键指标之一. 近场射电全息具有测量精度高, 便捷高效的优点, 是毫米波和亚毫米波射电望远镜面形检测最为常用的方法之一, 卡焦近场全息可以完整测量望远镜光路中整体的面形误差. 斜轴式机架结构能够更好地适应太赫兹望远镜在极端台址环境下的整体保温和热控需求, 但斜轴天线特殊的转动特性会在近场全息测量过程中引入额外的系统误差. 针对斜轴式天线的卡焦近场全息测量, 分析了数据处理中需要额外考虑的参考路接收机位置和副面衍射的影响, 并在1.2m口径斜轴式太赫兹天线上开展了测量实验. 实验结果表明, 卡焦近场全息测量的重复测量精度优于2.0μm RMS (Root Mean Square), 面形误差分布与摄影测量所得结果一致, 验证了误差分析与修正的正确性.  相似文献   

5.
大型射电望远镜的天线背架具有结构复杂和节点多等特点,若能够较为精确地重构天线背架的温度场,将对背架热变形等分析有很大帮助。通过在天线结构上安装一定数目的传感器,测量指定位置的温度值,利用距离反比加权插值方法与这些离散的温度值来重构天线背架的温度场,并对不同姿态下的温度场进行分析。而距离反比加权插值效果与距离计算方式、距离方次以及搜索半径相关,以交叉验证的方式对距离反比加权插值方法进行了优化,使精度优于0.5℃。另外,通过插值方法可得出任意时刻的背架温度场,并对不同状态下的背架温度场进行分析,得出影响温度场分布的因素,以及不同方向温差对天线造成的焦距误差与指向误差。  相似文献   

6.
借助精密工程测量手段,对65 m天线背架的日照温度效应进行了实验研究.在天线背架设计坐标系下分析实验数据,建立了日照温度变形模型,得出背架结构沿X方向变形系数为Kx=1.30×10-5,沿Z方向变形系数为Kz=-0.44×10-5,沿Y方向变形偏向太阳照射一侧.根据实验数据建立的背架变形模型,模拟分析了65 m天线背架日照温度变形对面形精度的影响,得出环境温度变化1℃带来的面形精度(均方根值rms)影响分量约为0.09 mm.实验结果为65 m天线主动面调节提供了很有价值的参考数据.  相似文献   

7.
热变形是影响大型毫米波天线性能的关键因素之一.这种变形会改变天线反射面的轴线和焦距、恶化反射面面形,导致天线效率和指向精度恶化,同时也使天线效率和指向的长时间稳定性降低.由于太阳的周日运动,造成望远镜4个主支撑腿(简称支腿)之间存在温差,且该温差是变化的,从而引起方位轴的倾斜周期性变化.采用数字摄影测量、倾斜仪测量及天文实测等多种仪器和方法,研究了德令哈13.7m望远镜天线的热变形规律,并根据实时测量的主面温度分布,实现了副面自适应调焦补偿,使得天线效率提高近1倍.测量发现常规指向模型修正后的残差与天线主反射面(包括反射面板和背架,简称主面)直径方向温差存在线性相关性,故在指向解析模型中加入了温差修正项,并通过采用隔热材料包裹支腿的办法显著减小了支腿之间的温差,从而改善了望远镜的指向精度.  相似文献   

8.
射电天线指向精度通常要求小于主波束宽度的1/10, 对于短厘米波段或毫米波段的大口径反射面天线, 指向精度要求高达几个角秒, 对于天线性能目标的实现是个巨大的挑战, 因此对于大口径高频段的反射面天线来说指向问题成为天线性能实现的重要关注焦点. 在众多影响天线指向精度的结构子系统因素中, 对主反射面变形因素的研究很少. 文章结合天线的结构特点建立了反射面空间坐标系统, 并基于变形后主面点的空间坐标值, 提出了3自由度下的非线性最小二乘吻合的方法去精准预测天线指向. 最后利用空间几何关系严格推导出了服务于天线指向误差修正的俯仰和方位的精确调整量, 从而构建了主面变形同指向误差之间的间接关系, 这对大型射电天线指向精度的提升具有一定的指导意义.  相似文献   

9.
随着双反射面天线口径的增大、工作频段的升高,天线对副反射面的精度要求也越来越高.当天线受到自重以及风荷、温度等外界因素的影响时,为了更好地保证满足天线的高指向精度等电性能要求,基于应变传感器和模态叠加原理,分别利用天线变形后副反射面支撑腿与副反射面自身结构的应变值来快速重构副反射面的位姿、形貌,便于副反射面调整机构对其进行实时修正,以实现更加精准的主副反射面位置匹配,降低因天线结构变形造成的波束指向误差和增益损失.  相似文献   

10.
环焦天线具有特殊的电磁特性和应用领域.对环焦天线的口径面相位误差进行了理论和仿真分析,推导了馈源和副面位置偏差引起的相位误差、主副面之间的补偿关系以及全息测量中天线转动引起的光程差.研究结果将对环焦天线的精确面形测量和补偿提供理论依据和参考.  相似文献   

11.
地基光学天文望远镜是人类探索与研究宇宙的重要手段, 对已有地基光学台址的光学观测环境进行监测分析, 可以为后期设备针对性改造以及观测者调整观测策略提供参考依据, 对提升地基光学设备的观测效能具有重要的意义. 吉林天文观测基地(简称``基地'')隶属于中国科学院国家天文台长春人造卫星观测站, 位于吉林省吉林市大绥河镇小绥河村南沟约5 km处(东经126.3\circ, 北纬43.8\circ, 海拔高度313m). 基地大气视宁度均值范围约为1.3$''$--1.4$''$、天顶附近V波段的天光背景亮度为20.64magcdotarcsec-2、年晴夜数最高可达270余天, 具有良好的天文观测条件. 吉林天文观测基地于2016年投入运行, 现有1.2m光电望远镜、迷你光电阵列望远镜、大视场光电望远镜阵列、新型多功能阵列结构光电探测平台等多台(套)光电望远镜设备. 利用上述设备, 主要围绕空间目标探测与识别、精密轨道确定、光电探测新方法以及变源天体的多色测光等开展相关研究工作, 与多家国内高校及科研院所保持着良好的合作关系.  相似文献   

12.
接收机是射电天文中用于探测微弱射电信号的重要接收设备.接收机的强度校准就是将接收机对射电源的响应转换为天文意义上的流量密度.常规方法就是使用经典的冷热负载法,将接收机自身的强度响应转换为一个等效的温度值,之后再据此对射电源做进一步标定.通过搭建基于斩波轮技术的K波段接收机强度校准平台,使用斩波轮法测试K波段常温接收机的噪声温度,并与传统冷热负载法的测试结果进行比对.结果显示,在晴好天气条件下,斩波轮法在30°、90°仰角下噪声温度的最大测试误差为7.5%和8.4%,可以很好地应用于实际噪声温度测试中;但在5°仰角测试中,由于过低仰角引入了地面噪声,使得斩波轮法的测试误差上升至20%–30%之间而无法使用.希望在此基础上进一步开展K波段天空亮温度的理论计算与实测,从而完善斩波轮技术的应用,使之可以满足在不同气象条件下的噪声校准测试需求.  相似文献   

13.
We present the rest‐frame UV to optical spectrum of the gravitationally lensed galaxy, the “8 o'clock arc” at z = 2.735, obtained with the X‐shooter spectrograph. This is one of the rare comprehensive study of a high‐redshift star‐forming galaxy, usually not feasible due to the faintness of these objects. The spectrum of the 8 o'clock arc is rich in stellar and interstellar absorption features and in nebular emission features. Their analysis allowed us to derive most of the physical properties characterizing the galaxy. From HST images, we reconstruct the morphology of the arc in the source plane and confirm that we resolve a clump in rotation around the main core of galaxy in our X‐shooter spectrum (© 2011 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

14.
为测量天线副面并联调整机构的相对位姿,研究了一种基于单目视觉的位姿测量系统.采用光源照射固定于动平台上的合作目标,结合滤光片等控制手段,利用单目相机采集非共面特征点的图像,获得高对比度的准理想图像.经过图像处理和平方加权质心法,提取出特征点的图像坐标,使用EPnP (Efficient Perspective-n-Point)算法进行位姿解算,最终可以得到并联调整机构的相对位姿测量方法.最后通过实验进行了精度验证,结果表明平移精度为0.1 mm,旋转精度为0.05°,满足了实验要求,为并联机构的位姿检测提供了可行性思路.  相似文献   

15.
The 64-m radio telescope equipped with an S-2 recording system in the town of Kalyazin was involved in an international fine-structure survey of quasars and active galactic nuclei carried out with a ground-based—space radio interferometer. The HALCA Japanese satellite in an orbit with an altitude of up to 24 000 km with an 8-m antenna was used as a space element of the interferometer. A radio image of the inner region of the CSS-type quasar 3C 147 was obtained with an angular resolution of ~0.3 mas at 6 cm. The image exhibits a core and several jet components mostly arranged in the main jet direction, but one of the components moves across the jet. No evidence was found for the superluminal separation of jet components. The estimated brightness temperature,~1011 K, is consistent with the theoretical limit imposed by synchro-Compton radiation.  相似文献   

16.
The installation and operation of a telescope in Antarctica represent particular challenges, in particular the requirement to operate at extremely cold temperatures, to cope with rapid temperature fluctuations and to prevent frosting. Heating of electronic subsystems is a necessity, but solutions must be found to avoid the turbulence induced by temperature fluctuations on the optical paths. ASTEP 400 is a 40cm Newton telescope installed at the Concordia station, Dome C since 2010 for photometric observations of fields of stars and their exoplanets. While the telescope is designed to spread star light on several pixels to maximize photometric stability, we show that it is nonetheless sensitive to the extreme variations of the seeing at the ground level (between about 0′′.1 and 5′′) and to temperature fluctuations between –30°C and –80 °C. We analyze both day‐time and night‐time observations and obtain the magnitude of the seeing caused by the mirrors, dome and camera. The most important effect arises from the heating of the primary mirror which gives rise to a mirror seeing of 0′′.23 K–1. We propose solutions to mitigate these effects. (© 2015 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

17.
The Coudé feed of the vacuum telescope (aperture D = 65 cm) at the Big Bear Solar Observatory (BBSO) is currently completely remodelled to accommodate a correlation tracker and a high‐order Adaptive Optics (AO) system. The AO system serves two imaging magnetograph systems located at a new optical laboratory on the observatory's 2nd floor. The InfraRed Imaging Magnetograph (IRIM) is an innovative magnetograph system for near‐infrared (NIR) observations in the wavelength region from 1.0 μm to 1.6 μm. The Visible‐light Imaging Magnetograph (VIM) is basically a twin of IRIM for observations in the wavelength range from 550 nm to 700 nm. Both instruments were designed for high spatial and high temporal observations of the solar photosphere and chromosphere. Real‐time data processing is an integral part of the instruments and will enhance BBSO's capabilities in monitoring solar activity and predicting and forecasting space weather.  相似文献   

18.
We are monitoring a 6° wide stripe along the southern Galactic disk simultaneously in the r and i bands, using a robotic 15‐cm twin telescope of the Universitätsternwarte Bochum near Cerro Armazones in Chile. Utilising the telescope's 2.7° field of view, the survey aims at observing a mosaic of 268 fields once per month and to monitor dedicated fields once per night. The survey reaches a sensitivity from 10m down to 18m (AB system), with a completeness limit of r ∼ 15.5m and i ∼ 14.5m which – due to the instrumental pixel size of 2.″4 – refers to stars separated by >3″. This brightness range is ideally suited to examine the intermediately bright stellar population supposed to be saturated in deep variability surveys with large telescopes. To connect to deep surveys or to explore faint long term variables, coadded images of several nights reach a depth of ∼ 20m. The astrometric accuracy is better than 1″, as determined from the overlap of neighbouring fields. We describe the survey design, the data properties and our procedures to derive the light curves and to extract variable stars. We present a list of ∼2200 variable stars identified in 50 square degrees with 50‐80 observations between May and October 2011. For bright stars the variability amplitude A reaches down to A ∼ 0.05m, while at the faint end variations of A > 1m are detected. About 200 stars were known tobe variable, and their amplitudes and periods – as far as determinable from our six month monitoring – agree with literature values, demonstrating the performance of the Bochum Galactic Disk Survey (© 2012 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   

19.
Five out of six Square Kilometre Array (SKA) science programs need extensive surveys at frequencies below 1.4 GHz and only four need high-frequency observations. The latter ones drive to expensive high surface accuracy collecting area, while the former ask for multi-beam receiver systems and extensive post correlation processing. In this paper, we analyze the system cost of a SKA when the field-of-view (Fov) is extended from 1 deg2 at 1.4 GHz to 200 deg2 at 0.7 GHz for three different antenna concepts. We start our analysis by discussing the fundamental limitations and cost issues of wide-band focal plane arrays (FPA) in dishes and cylinders and of wide-band receptors in aperture arrays. We will show that a hybrid SKA in three different antenna technologies will give the highest effective sensitivity for all six key science programs.  相似文献   

20.
The new generation of radio telescopes, such as the proposed Square Kilometer Array (SKA) and the Low-Frequency Array (LOFAR) rely heavily on the use of very large phased aperture arrays operating over wide band-widths at frequency ranges up to approximately 1.4?GHz. The SKA in particular will include aperture arrays consisting of many thousands of elements per station providing un-paralleled survey speeds. Currently two different arrays (from nominally 70?MHz to 450?MHz and from 400?MHz to 1.4?GHz) are being studied for inclusion within the overall SKA configuration. In this paper we aim to analyze the array contribution to system temperature for a number of regular and irregular planar antenna array configurations which are possible geometries for the low-frequency SKA (sparse disconnected arrays). We focus on the sub-500?MHz band where the real sky contribution to system temperature (T sys ) is highly significant and dominants the overall system noise temperature. We compute the sky noise contribution to T sys by simulating the far field response of a number of SKA stations and then convolve that with the sky brightness temperature distribution from the Haslam 408?MHz survey which is then scaled to observations at 100?MHz. Our analysis of array temperature is carried out by assuming observations of three cold regions above and below the Galactic plane. The results show the advantages of regular arrays when sampled at the Nyquist rate as well as their disadvantages in the form of grating lobes when under-sampled in comparison to non-regular arrays.  相似文献   

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