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A conceptual design for programmable advanced life support system with flexible food production system

机译:具有柔性食品生产系统的可编程先进寿命支持系统的概念设计

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A Programmable Advance Life Support System (ALSS) that can accommodate all the demand changes necessary for life support must be developed particularly for bioregenerative functions. We have previously developed the Gravity Independent Photosynthetic Growing System (GIPGS) - a versatile multi-crop growing system, Automatic Plant Growing and Harvest System (APGHS) - a self- regenerating continuous food production system, and the Inflatable Self-sufficient Growth Bags (ISGB). These systems can accommodate production of many other crops such as wheat, rice, lettuce, komatsuna, tomato, cucumber, sprout crops and fermented foods which can be all prepackaged in self-contained growth bags. GIPGS is capable of growing different crops and crops in different stages simultaneously with a high density and high-energy efficiency, APGHS has auto crop management for perpetual food production and auto harvest systems. Programmable logic controllers control most of these hardware functions. Bioregenerative functions such as Food Production (FP), Water Purification (WP), Air Revitalization (AR), and Waste Recovery (WR) must be suppressed or enhanced depending on the system demand changes. If the hardware complexity of the Bioregenerative Life Support System (BLSS) were lessened and variable factors such as biomass, gas exchange, and nutrient requirement were to be kept constant, BLSS function can be easily programmed to analyze and change growing parameters to make necessary changes on a specific function of BLSS. Intelligent Growth Bags of different types that alleviate complex hardware operations are being developed. When this is achieved, the operation of BLSS becomes more reliable and predictable to the point that a desired function, i.e., enhanced AV function mode, can be easily accomplished by changing the parameters of the growing system without disrupting food productions.
机译:必须为生物从本功能开发一个可编程的推进寿命支持系统(ALSS),其可以适应终身功能所需的所有需求变化。我们以前已经开发出重力独立的光合生长系统(GIPGS) - 一种多功能多作物生长系统,自动植物生长和收获系统(APGHS) - 一种自我再生的连续食品生产系统,以及充气自给式增长袋( ISGB)。这些系统可以容纳许多其他作物的生产,例如小麦,稻,生菜,小松,番茄,黄瓜,萌芽作物和发酵食品,这些食品都可以全部预先包装在独立的增长袋中。 GIPGS能够同时产生不同阶段的不同作物和作物,具有高密度和高能量效率,APGHS具有永久食品生产和汽车收获系统的汽车作物管理。可编程逻辑控制器控制大多数这些硬件功能。必须抑制或增强食品生产(FP),水净化(WP),空气纯化(AR),空气纯化(AR),空气恢复(AR),以及废物恢复(WR)等生物根除功能。如果减少了生物生物寿命支持系统(BLSS)的硬件复杂性,并且诸如生物质,气体交换和营养需求的可变因素是保持恒定的,则可以轻松地编程BLS功能以分析和改变生长参数以进行必要的变化关于BLS的特定功能。正在开发缓解复杂硬件操作的不同类型的智能增长袋。当实现这一点时,BLS的操作变得更可靠并且可预测到所需功能,即增强的AV功能模式可以通过改变生长系统的参数而不破坏食品的程度来容易地完成。

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