首页> 外文学位 >Smart LED lighting for major reductions in power and energy use for plant lighting in space.
【24h】

Smart LED lighting for major reductions in power and energy use for plant lighting in space.

机译:智能LED照明可大幅减少太空中植物照明的功率和能耗。

获取原文
获取原文并翻译 | 示例

摘要

Launching or resupplying food, oxygen, and water into space for long-duration, crewed missions to distant destinations, such as Mars, is currently impossible. Bioregenerative life-support systems under development worldwide involving photoautotrophic organisms offer a solution to the food dilemma. However, using traditional Earth-based lighting methods, growth of food crops consumes copious energy, and since sunlight will not always be available at different space destinations, efficient electric lighting solutions are badly needed to reduce the Equivalent System Mass (ESM) of life-support infrastructure to be launched and transported to future space destinations with sustainable human habitats. The scope of the present study was to demonstrate that using LEDs coupled to plant detection, and optimizing spectral and irradiance parameters of LED light, the model crop lettuce (Lactuca sativa L. cv. Waldmann's Green) can be grown with significantly lower electrical energy for plant lighting than using traditional lighting sources. Initial experiments aimed at adapting and troubleshooting a first-generation "smart" plant-detection system coupled to LED arrays resulted in optimizing the detection process for plant position and size to the limits of its current design. Lettuce crops were grown hydroponically in a growth chamber, where temperature, relative humidity, and CO2 level are controlled. Optimal irradiance and red/blue ratio of LED lighting were determined for plant growth during both lag and exponential phases of crop growth. Under optimizing conditions, the efficiency of the automatic detection system was integrated with LED switching and compared to a system in which all LEDs were energized throughout a crop-production cycle. At the end of each cropping cycle, plant fresh and dry weights and leaf area were measured and correlated with the amount of electrical energy (kWh) consumed. Preliminary results indicated that lettuce plants grown under optimizing conditions with red and blue LED lighting required 12 times less energy than with a traditional high-intensity discharge lighting system. This study paves the way for refinement of the smart lighting system and further, major reductions in ESM for space life-support systems and for ground-based controlled-environment agriculture. Project supported by NASA grant number NNX09AL99G.
机译:目前尚不可能将食物,氧气和水发射或补充到太空中,以进行长期的,有人值守的任务,前往火星等遥远的目的地。全球正在开发的涉及光合自养生物的生物再生生命支持系统为解决食品难题提供了解决方案。但是,使用传统的基于地球的照明方法,粮食作物的生长会消耗大量能源,并且由于在不同的空间目的地不一定总能获得阳光,因此迫切需要高效的电照明解决方案来减少生命的等效系统质量(ESM)。支持将基础设施发射并运输到具有可持续人类栖息地的未来太空目的地。本研究的范围旨在证明,将LED与植物检测结合使用,并优化LED光的光谱和辐照参数,可以使用较低的电能来种植模型农作物生菜(莴苣)。植物照明比使用传统照明光源。旨在对与LED阵列耦合的第一代“智能”植物检测系统进行适配和故障排除的初步实验,导致了针对植物位置和尺寸的检测过程的优化,使其达到了当前设计的极限。生菜作物在温度,相对湿度和二氧化碳水平受到控制的生长室中水培生长。确定了在作物生长的滞后和指数阶段植物生长的最佳辐照度和LED的红/蓝比。在优化条件下,自动检测系统的效率与LED开关集成在一起,并且与整个作物生产周期中所有LED都通电的系统相比。在每个种植周期结束时,测量植物的鲜重和干重以及叶面积,并将其与消耗的电能(kWh)关联。初步结果表明,在优化条件下使用红色和蓝色LED照明生长的生菜植物比传统的高强度放电照明系统所需的能源少12倍。这项研究为改进智能照明系统,进一步减少空间生命支持系统和地面控制环境农业的ESM铺平了道路。由NASA资助号NNX09AL99G支持的项目。

著录项

  • 作者

    Poulet, Lucie.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Aerospace.;Engineering Agricultural.
  • 学位 M.S.E.
  • 年度 2012
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号