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Plant Growth Optimization by Vegetable Production System in HI-SEAS Analog Habitat

机译:HI-SEAS模拟栖息地蔬菜生产系统的植物生长优化

摘要

The Vegetable Production System (Veggie) is a scientific payload designed to support plant growth for food production under microgravity conditions. The configuration of Veggie consists of an LED lighting system with modular rooting pillows designed to contain substrate media and time-release fertilizer. The pillows were designed to be watered passively using capillary principles but have typically been watered manually by the astronauts in low-Earth orbit (LEO). The design of Veggie allows cabin air to be drawn through the plant enclosure for thermal and humidity control and for supplying CO2 to the plants. Since its delivery to the International Space Station (ISS) in 2014, Veggie has undergone several experimental trials by various crews. Ground unit testing of Veggie was conducted during an 8-month Mars analog study in a semi-contained environment of a simulated habitat located at approximately 8,200 feet (2,500 m) elevation on the Mauna Loa volcano on the Island of Hawaii. The Hawaii Space Exploration Analog and Simulation (HI-SEAS) offered conditions (habitat, mission, communications, etc.) intended to simulate a planetary exploration mission. This paper provides data and analyses to show the prospect for optimized use of the current Veggie design for human habitats. Lessons learned during the study may provide opportunities for updating the system design and operational parameters for current Veggie experiments being conducted onboard the ISS and for payloads on future deep space missions.
机译:蔬菜生产系统(Veggie)是一种科学的有效载荷,旨在支持植物在微重力条件下的生长,以用于食品生产。 Veggie的配置包括一个带模块化生根枕头的LED照明系统,该生根枕头设计用于容纳基质介质和时效肥料。枕头被设计成使用毛细原理被动地浇水,但通常由低地球轨道(LEO)中的宇航员手动浇水。 Veggie的设计使车厢内的空气可以通过工厂的机壳抽出,以进行温度和湿度控制以及向工厂供应CO2。自2014年提供给国际空间站(ISS)以来,素食主义者已经接受了许多工作人员的几次实验试验。在8个月的火星模拟研究中,在夏威夷岛的莫纳罗亚火山海拔约8,200英尺(2,500 m)高的模拟栖息地的半封闭环境中,对蔬菜进行了地面单元测试。夏威夷太空探索模拟与仿真(HI-SEAS)提供了旨在模拟行星探索任务的条件(居住,任务,通信等)。本文提供了数据和分析,以显示将当前的Veggie设计优化用于人类栖息地的前景。研究期间吸取的经验教训可能会为国际空间站上正在进行的最新Veggie实验以及未来深空飞行任务的有效载荷提供更新系统设计和操作参数的机会。

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