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Commercial Free Flyer Satellites And Orbital Re-entry/Recovery Systems For Low Cost Microgravity Research

机译:商业自由传单卫星和轨道再入/恢复系统,用于低成本微争夺研究

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Part of the next generation network of Space Transportation Systems will include unmanned, autonomous "Free Flyer" satellites with ground-controlled re-entry and recovery systems for low-cost biomedical and microgravity research. A commercial space requirement for the launch, LEO deployment and orbital recovery of low-cost research satellites will be an important function of spaceport operations and technology development in the next decade. Free flyer satellites will effectively complement the capabilities of intermittent manned Shuttle/SpaceHab missions and more sophisticated, long-duration, manned Mir and International Space Station missions. The USCORP initiative has been developed by ITA, Inc, to provide a commercially owned and operated orbital free flyer satellite and re-entry/recovery system to support microgravity, biomedical and life sciences research. The next generation low-cost, commercially viable orbital platform for microgravity research will depend on the application of existing technologies with flight-proven systems. This approach will ensure the operational reliability and low costs that will be required for commercial unmanned research missions. These commercial flight systems will be launched, remotely operated on orbit, and recovered from commercial spaceports utilizing next-generation advanced spaceport technologies and capabilities.
机译:下一代空间运输系统网络的一部分将包括无人驾驶,自主的“免费传单”卫星,具有用于低成本生物医学和微争的研究的地面控制的再入和恢复系统。低成本研究卫星的发射,Leo部署和轨道复苏的商业空间要求将是未来十年在下十年中的Spaceport运营和技术开发的重要功能。免费传单卫星将有效地补充间歇性载人的班车/ Spacehab任务的能力,更复杂,长期,载人的MIR和国际空间站任务。 USCORP倡议由ITA,Inc,提供商用和操作的轨道免费传单卫星和再入/恢复系统,以支持微匍匐,生物医学和生命科学研究。用于微匍匐研究的下一代低成本,商业上可行的轨道平台将取决于现有技术与飞行证明系统的应用。这种方法将确保商业无人的研究任务所需的操作可靠性和低成本。这些商业飞行系统将在轨道上进行远程操作,并从商用Spaceports利用下一代高级Spaceporporp技术和功能恢复。

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