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1.
把抛物面天线的偏焦理论应用于FAST L波段多波束馈源系统的设计,分析了馈源喇叭横向偏焦距离与相应波束偏离角之间的关系,结合多波束射电望远镜扫描方式的要求,给出了FAST L波段多波束馈源的工作带宽、多波束馈源中相邻喇叭的间距以及喇叭口径大小的限制,并对正六边形阵列中处于不同位置的喇叭对应的波束的主瓣情况作了详细计算和分析。由此说明了FAST L波段多波束馈源采用19波束的可行性。另一方面,根据得到的工作频率带宽和喇叭口径大小的情况,对OMT和喇叭类型的选择进行了探讨。本文给出了FAST L波段多波束系统的大概轮廓,为进一步精确设计指明了方向。  相似文献   

2.
对下一代候选超宽带馈源进行了分析对比,并设计了一种圆形四脊张角喇叭,该喇叭在7:1的频带范围内在波瓣图相位角0°和45°所对应的E面和D面取得了近乎常数的波束带宽,并且其在2-14 GHz频段范围内回波损耗均在10 dB以上。最后对圆形四脊张角喇叭的增益性能和波束带宽特性进行了探索和研究。该喇叭的研究对中国VLBI2010的超宽带接收系统的设计有重大意义。  相似文献   

3.
天马望远镜是65 m口径全实面地平式射电望远镜,信号经赋型抛物面主反射镜和赋型双曲面副反射镜汇集后在卡塞格伦焦点处馈入低温低噪声接收系统。开展天马射电望远镜轴向偏焦研究,旨在拓展天马望远镜在低频段的接收,创新之处在于利用P波段低频振子天线作为接收机馈源,放置在距离副反射面顶点下方约1/4波长处,研究天马望远镜在P波段开展天文观测的可行性。研究内容包括P波段振子天线设计、馈源轴向偏焦位置优化以及观测性能分析。P波段振子天线作为馈源,天线最大增益45 d B,天线效率64.25%。  相似文献   

4.
馈源是射电望远镜天线系统的一个重要组成部分,其性能将直接影响整个天线系统的电性能。针对射电望远镜天线系统中典型的圆锥喇叭馈源,通过三维电磁仿真软件(CST STUDIO SUITE12.0)进行建模,分析了不同圆锥度、椭圆度及不圆度对圆锥喇叭馈源远场方向性的影响。结果表明:口径面的椭圆度在一定范围内变化时,对圆锥喇叭馈源方向性的影响较小。且其回波损耗小于-15dB;圆柱波导段的圆锥度大于1:20时,圆锥喇叭的效率会受到一定的影响:不圆度的影响则较大。文中得到的结构因素对圆锥喇叭馈源电性能影响的研究结果.对射电望远镜天线系统中圆锥喇叭馈源的设计和制造具有一定的参考作用。  相似文献   

5.
随着射电天文研究的不断深入,科学家对望远镜分辨率和灵敏度的要求也不断提高,同时要求望远镜具有更宽的观测波段。单口径望远镜低频波段用主焦点接收,馈源尺寸可以更紧凑。为了不影响双反射面天线次焦点的馈电功能,主焦点馈源的放置及换馈方案必须高效合理。以建于新疆奇台的110 m口径全可动射电望远镜为研究对象,以意大利SRT 64 m和德国Effelsberg 100 m射电望远镜为参考,对两种方案应用于奇台110 m射电望远镜的可行性进行分析,并提出一种利用线性模组进行主焦馈源快速切换的新型方案。进行了直线模组机构的建模和仿真,并对口径面信号遮挡进行了分析,结果表明,此方案能有效满足望远镜的工作需求。  相似文献   

6.
射电天文中焦面阵或多波束馈源的应用   总被引:4,自引:1,他引:3  
焦面阵技术或者多波束馈源系统已经日益广泛地应用于现代射电望远镜,因为它可以充分地利用同一射电望远镜反射面所能提供的信息,在观测比射电望远镜方向瓣大得多的展源时数倍乃至数十倍地提高观测的速度;当存在大气层或电离层的起伏或不均匀影响观测成像质量时,可消除这种影响,提高观测质量;利用焦面阵各单个馈源接收到的信息的互相关,则可以实时监控射电望远镜的反射面、二次反射面、指向精度,从而降低地面上大射电望远镜或空间射电望远镜的精度要求和造价。目前焦面阵已经愈来愈广泛地配置在毫米波射电望远镜和大型射电望远镜的主要波段。对此作了一个较新和全面的评述,对焦面阵应用中的限制,包括相位误差的限制和性能价格比的考虑和可能的前景作了简要的介绍。还分析了在计划中的大型主动球反射面射电望远镜(即FAST)上,配置焦面阵的相应限制、问题和难点,提出了初步的建议,并给出经中英双方讨论后初步拟定的FAST频段、波束及低噪声放大器的配置。  相似文献   

7.
一种扩大FAST视场的方法   总被引:1,自引:0,他引:1  
所有的大口径射电望远镜都存在这样一个问题:在其分辨率和灵敏度提高的同时,视场变小.而且口径越大,视场越小.这成为大口径望远镜不可回避的矛盾.要解决这个矛盾,可以在望远镜的焦平面上放置Ⅳ个分立馈源.让它们同时工作,这样可以看作把视场扩大了Ⅳ倍.望远镜的工作效率提高Ⅳ倍.但是这样做的缺点是——视场不连续.且馈源数目Ⅳ受到望远镜焦比(F/D)的限制.采用致密焦面阵(dense focal plane array)就可以很好地解决这个问题.致密焦面阵的单元不是喇叭口天线,而是无方向性的Vivaldi天线(Vivaldi antenna).要把Vivaldi阵列应用到望远镜上,需要对单个Vivaldi天线和Vivaldi阵列的电性能有清楚的认识,并能根据需要来设计照明方向图.还要知道大望远镜的焦面上电磁场的分布情况,借此判断能否应用Vivaldi阵列,以及给出Vivaldi单元的分路赋权网络.主要给出了FAST的焦面场的分布情况.并说明应用Vivaldi阵列的可能性.  相似文献   

8.
叙述了FAST(500m口径球面射电望远镜)30m模型L-波段馈源的设计、制作和性能测试过程。馈源的设计仿真使用了HFSS软件,并选用纸板或塑料板和铝箔胶带,通过手工操作完成馈源制作。馈源的性能通过测试表明满足FAST30m模型天文观测的需要。文中采用的HFSS软件仿真及手工制作馈源的方式不失为形式简单的馈源的模型制作的一种快速、经济和有效的方法。这种方法对相近的工作有一定的参考价值。  相似文献   

9.
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   

10.
上海65米射电望远镜是亚洲最大、全方位可转动的大型射电望远镜,在国内首次配备主动面系统。对主动面系统应用的关键技术——偏焦全息测量技术在上海65米射电望远镜中的初步应用情况进行介绍。首先,介绍常用的天线主反射面面型测量方法。接着,介绍偏焦全息测量技术的应用方法。采用飞行扫描,利用X波段致冷接收机和连续谱终端,将射电源3C84作为信号源,通过移动副反射面测量得到一幅聚焦天线方向图和两幅偏焦天线方向图。将三幅天线方向图作为偏焦全息测量算法的输入,获得天线口径面相位分布的Zernike系数。依据Zernike系数计算得到天线主反射面型面误差的均方根值(root mean square,RMS),该均方根值与前期照相测量的结果基本相符。最后,对今后的改进工作进行展望。  相似文献   

11.
A cross bow-tie dipole feed with cavity and symmetrical E and H plane pattern is presented for the Five hundred-meter Aperture Spherical radio Telescope(FAST).In this paper we describe the design,optimization and simulation results of a wide-band cross dipole feed with cavity covering the frequency range from 300 MHz to 600 MHz for FAST.The main goals of our design are to ensure that,(1)we cover the octave bandwidth,(2)the feed has symmetrical E and H plane pattern,and(3)the physical dimension is suitable for mounting it in the reserved position of the FAST feed cabin.The initial results indicate that we have met most of our design goals.This kind of feed had been equipped with the multi-beam receiver to carry out observation on the platform of FAST cabin.  相似文献   

12.
FAST, the largest single-dish radio telescope in the world, has a 500-meter diameter main reflector and a 300-meter diameter illuminated area. It has a main reflector that can vary its shape, which continuously changes the shape of the illuminated area in reflector into a paraboloid. In this article, we propose a quasiCassegrain system for FAST. The detailed design results are provided. Such a quasi-Cassegrain system only needs to add a 14.6-meter diameter secondary reflector, which is close to the size of the feed cabin. The distance from the secondary reflector to the focus is only 5.08 m, and it has excellent image quality. In this quasi-Cassegrain system, the shape of the illuminated area in the main reflector continuously changes into an optimized hyperboloid. Using this quasi-Cassegrain system from frequency 0.5 GHz to 8 GHz, the multi-beam system can include 7 to 217 feeds. If this system is used in combination with Phased Array Feed(PAF) technology, more multi-beam feeds or a higher working frequency can be used.  相似文献   

13.
In this paper we demonstrate the practical analysis of a dense Focal Plane Array (FPA) for a deep dish radio telescope. The analytical model is used to optimize efficiency and bandwidth of deep dish system by varying design parameters such as feed size and FPA aperture field. A prototype FPA was evaluated on the Westerbork Synthesis Radio Telescope (WSRT) and the resulting efficiency is discussed.  相似文献   

14.
针对FAST的天文观测要求,对其天文观测软件进行了设计与开发。首先介绍了FAST天文观测的原理,对天文观测软件进行了需求分析。而后提出了馈源天文运动轨迹规划算法,并进行了仿真。针对其轨迹要求给出了控制方法,对天文观测控制软件进行了设计与实现。最后通过现场实地实验,验证了本文所提的算法与软件的可行性。  相似文献   

15.
Five-hundred-meter Aperture Spherical Telescope project   总被引:2,自引:0,他引:2  
A Five hundred meter Aperture Spherical Telescope (FAST) is proposed to be built in the unique karst area of southwest China, and will act, in a sense, as a prototype for the Square Kilometer Array (SKA). It will be over twice as large as the Arecibo telescope coupled with much wider sky coverage. Some results from site surveys for such a SKA concept are briefly reported. Technically, FAST is not simply a copy of the existing Arecibo telescope but has rather a number of innovations. Firstly, the proposed main spherical reflector, by conforming to a paraboloid of revolution in real time through actuated active control, enables the realization of both wide bandwidth and full polarization capability while using standard feed design. Secondly, a feed support system which integrates optical, mechanical and electronic technologies will effectively reduce the cost of the support structure and control system. Pre-research on FAST has become a key project in the CAS. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

16.
The Five-hundred-meter Aperture Spherical radio Telescope(FAST)was launched on 2016 September 25.From early 2017,we began to use the FAST wideband receiver,which was designed,constructed and installed on the FAST in Guizhou,China.The front end of the receiver is composed an uncooled Quad Ridge Flared Horn feed(QRFH)with the frequency range of 270 to 1620 MHz,and a cryostat operating at 10 K.We have cooperated with the Institute of Automation of the Chinese Academy of Sciences to develop the China Reconfigurable ANalog-digital backEnd(CRANE).The system covers the 3 GHz operating band of FAST.The hardware part of the backend includes an Analog Front-end Board,a wideband high precision Analog Digital Converter,and a FAST Digital Back-end.Analog circuit boards,field programmable gate arrays,and control computers form a set of hardware,software,and firmware platforms to achieve flexible bandwidth requirements through parameter changes.It is also suitable for the versatility of different astronomical observations,and can meet specific requirements.This paper briefly introduces the hardware and software of CRANE,as well as some observations of the system.  相似文献   

17.
Similarity model of feed support system for FAST   总被引:1,自引:0,他引:1  
A new design of feed support system for Five hundred meter Aperture Spherical Telescope (FAST) is proposed in this paper. According to the similarity theory, a 1:15 scale model of feed support system has been built to make systemic research on the feasibility of the system. Then the control system and hardware structure of the feed support system are illustrated. A complete astronomical observation track is run by the scale model and the experiments results demonstrate that the new feed support system can satisfy the observation accuracy requirement of FAST.  相似文献   

18.
1 INTRODUCTIONThe FAST is an ArecibChtype telescope with a number of innovations, which is to be built inthe unique karst area of Southwest China (Nan Rendong et al. 1996). Some basic parametersof the FAST have been tentatively suggested such as, curvature radius R = 300m, openingangle 0 = 120', and frequency range from 300MHz to 5 GHz. Baized on the fact that thecelltral part of a spherical surface deyiates little from a paraboloid as a proper focal length ischosen, a novel design…  相似文献   

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