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Performance of the advanced ASTROCULTURE plant growth unit during ISS-6A/7A mission

机译:在ISS-6A / 7A任务期间的高级星形文化工厂增长单位的性能

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With the help of Space Product Development Program at NASA Marshall Space Flight Center in Huntsville, Alabama, the Wisconsin Center for Space Automation and Robotics (WCSAR) at the University of Wisconsin-Madison has developed the Advanced ASTROCULTURE(ADVASC) plant growth unit, which is dedicated to conducting commercial or fundamental plant growth research on board the International Space Station (ISS). ADVASC provides an enclosed, environmentally controlled plant growth chamber with controlled parameters of temperature, relative humidity, light intensity, fluid nutrient delivery, and CO{sub}2 and hydrocarbon (ethylene) concentrations. Auto-prime technology eliminates the need for electrical power during Shuttle ascent/descent, and therefore greatly relieves the shortage of Shuttle resources and ISS crew time. State-of-the-art control software combined with fault tolerance and recovery algorithm significantly increases overall system robustness and efficiency. Tele-science features allow engineers and scientists to remotely receive telemetry data and video images, send remote commands, and monitor plant development status. A two-month successful experiment, 5/10/01 - 7/19/01, of growing Arabidopsis thaliana from seed to seed during the ISS-6A/7A mission has demonstrated that ADVASC is capable of providing desired environmental conditions suitable for Arabidopsis growth and development in microgravity, and that ADVASC is able to autonomously maintain chamber environmental conditions without crew intervention, despite power interruptions.
机译:在威斯康星大学的威斯康星州亨斯维尔航天驻亨斯维尔航天航天航天飞行中心的空间产品开发计划的帮助下,威斯康星大学 - 麦迪逊威斯康星州空间自动化和机器人(WCSAR)开发了先进的星形文化(Advasc)植物增长单位致力于对国际空间站(ISS)进行商业或基本植物生长研究。 Advasc提供一种具有受控参数的温度,相对湿度,光强度,流体营养递送和Co {} 2和烃(乙烯)浓度的封闭的环保植物生长室。自动素材技术消除了在班车上升/下降期间对电力的需求,因此极大地减轻了班车资源和ISS船员时间的短缺。最先进的控制软件与容错和恢复算法相结合,显着提高了整体系统的鲁棒性和效率。远程科学功能允许工程师和科学家远程接收遥测数据和视频图像,发送远程命令和监控工厂开发状态。在ISS-6A / 7A任务期间从种子种子中生长拟南芥拟南芥的两个月成功的实验已经表明,Advisc能够提供适合拟南芥生长的所需环境条件尽管能源中断,但是在微匍匐的情况下,能够在没有船员干预的情况下自主维护室内环境条件。

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