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THE QB50 PROJECT AND THE PARTICIPATION OF CHINESE UNIVERSITIES

机译:QB50项目和中国大学的参与

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The QB50 project is jointly put forward by Von Karmon Institute of Technology, TU Delft, Surrey Space Center, and Space Center EPFL, Leibniz-Instituts fuer Atmosphaerenphysik, Stanford University and Shaanxi Engineering Laboratoryfor Microsatellites(SELM), etc. It is a network with 50 CubeSats in a 'string-of-pearls' configuration that will be used for the multi-point, in-situ, long-duration measurements of key parameters and constituents in the largely unexplored lower thermosphere/ionosphere and for re-entry research. The 50 CubeSats will comprise 40 atmospheric double CubeSats and 10 double or triple CubeSats for special in-orbit demonstration. All 40 atmospheric double CubeSats and most of the double and triple CubeSats for In-Orbit Demonstration (IOD CubeSats) will carry a set of standardized sensors for atmospheric research. Each of the QB50 CubeSat will consist of two parts, with one part (the 'functional' unit) providing the usual satellite functions (including attitude determination and control, uplink and downlink telecommunications, power subsystem including battery and body-mounted solar cells, on-board data handling and storage by a CPU) and the other part (the 'Science' unit) accommodating a set of standardized sensors for lower thermosphere/ionosphere and re-entry research. According to the plan, all 50 CubeSats will be launched together on a single launch vehicle, a Russian Shtil-2.1, from Murmansk in Northern Russia into a circular orbit at 320 km altitude, with an inclination of 79°. Due to atmospheric drag, the orbits of the CubeSats will get progressively lower, perhaps down to 90 km and thus lower layers of the thermosphere will be explored without the need for on-board propulsion. The mission lifetime of the whole CubeSats system is estimated to be about three months. To fulfill satellite control, an international network, the Global Educational Network for Satellite Operations (GENSO), will be used and put into operation in time for QB50. It would eventually comprise more than 100 ground stations in different regions of the world, which will provide a more powerful uplink and downlink capability for all CubeSats. In China, there are more than six Chinese universities having taken part in the QB50 project. As the Asia coordinator, and one of the three Mission Control Centers (three Mission Control Centers will be set up at VKI, Stanford and SELM), SELM will ensure the communication between QB50 and China teams.
机译:QB50项目由冯·卡蒙技术学院,荷兰代尔夫特大学,萨里航天中心和EPFL航天中心,斯坦福大学大气科学研究所,斯坦福大学和陕西微卫星工程实验室(SELM)等共同提出。 50个“珍珠串”配置的CatSat,将用于在很大程度上尚未开发的较低热层/电离层中关键参数和组成部分的多点,原位,长期测量,以及用于再入研究。 50个立方体卫星将包括40个大气双重立方体卫星和10个双重或三重立方体卫星,用于特殊的在轨演示。所有40个大气双星卫星以及大多数在轨演示双星和三星卫星(IOD CubeSat)将携带一套用于大气研究的标准化传感器。每个QB50 CubeSat将由两部分组成,其中一个部分(“功能”单元)提供常规的卫星功能(包括姿态确定和控制,上行链路和下行链路电信,包括电池和车载太阳能电池的电源子系统)。机载数据处理和存储(CPU),另一部分(“科学”单元)容纳一组标准化的传感器,用于较低的热层/电离层和重入研究。根据计划,所有50颗CubeSat卫星将由俄罗斯北距摩尔曼斯克的俄罗斯Shtil-2.1运载火箭一起发射,进入320公里高的圆形轨道,倾斜度为79°。由于大气阻力,CubeSats的轨道将逐渐降低,可能下降到90 km,因此将在不需要机载推进的情况下探索热层的较低层。整个CubeSats系统的任务寿命估计为三个月左右。为了实现卫星控制,将使用一个国际网络,即全球卫星操作教育网络(GENSO),并在QB50之前适时投入运行。最终它将在世界不同地区包括100多个地面站,这将为所有CubeSat提供更强大的上行链路和下行链路功能。在中国,有超过六所中国大学参与了QB50项目。作为亚洲协调员以及三个任务控制中心之一(将在VKI,斯坦福和SELM设立三个任务控制中心),SELM将确保QB50与中国团队之间的沟通。

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