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THE SPHERES ISS LABORATORY FOR RENDEZVOUS AND FORMATION FLIGHT

机译:交会和编队飞行的球形ISS实验室

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摘要

The International Space Station (ISS) provides the ability for the creation of true laboratories in a micro-gravity environment. The availability of humans in the ISS presents a further advantage: the ability to put humans in the design loop. The MIT Space Systems Laboratory developed a new laboratory design philosophy to take advantage of these new resources. The new philosophy is implemented in the SPHERES testbed, which creates a laboratory environment in the ISS that allows multiple scientists to develop and validate high-risk control, autonomy, and metrology algorithms for separated spacecraft that enable formation flight, rendezvous, and docking of satellites. By incorporating humans into the design loop of a micro-gravity system, as well as providing the ability to replenish consumables, the testbed provides a low-risk yet high-payoff environment where algorithms can be tested to their limits prior to deployment in full space missions. Subsequent deployment can be performed with a higher degree of confidence.
机译:国际空间站(ISS)提供了在微重力环境中创建真实实验室的能力。 ISS中人员的可用性进一步带来了优势:将人员置于设计循环中的能力。麻省理工学院太空系统实验室开发了一种新的实验室设计理念,以利用这些新资源。新的原理在SPHERES测试平台中得以实现,该平台在ISS中创建了一个实验室环境,使多个科学家可以为分离的航天器开发和验证高风险控制,自主权和计量算法,从而实现编队飞行,会合和对接卫星。通过将人员纳入微重力系统的设计循环中,并提供补充消耗品的能力,测试平台提供了一种低风险但高回报的环境,在此环境中,算法可以在全空间部署之前对其算法进行极限测试任务。可以以更高的置信度执行后续部署。

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