Christine Kong, D. Westerfeld
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引用次数: 0

摘要

传统上,太阳能要么通过光伏技术获取,要么通过吸收农作物获取。由于这两种功能被用于人类生活的不同领域,因此假设两者不能共存。本文提出了一种光伏技术与植物生理学相结合的设计方案。Solis Flores是一种自动太阳能电池板供电系统,在农田中穿插使用。这个受植物启发的光伏系统通过监测农作物的健康状况与农田同步。Solis Flores调查土壤水分水平和pH值,以管理和改善农业植物健康,而不竞争土地。受植物解剖和功能的启发,Solis Flores利用太阳能作为其能源来源,并利用植根传感器分析可能的健康突发事件,然后向用户传达田地的状态。Solis Flores的太阳能电池板类似于植物的叶子和花朵,旨在跟踪太阳并优化太阳能的收集。电路由一个类似于锅的外壳单元保护,该外壳单元也承载了为整个系统供电的内部电池存储。Solis Flores将无线自组织网络(WANET)和基于传感器的植物健康监测系统应用于自主太阳能电池板系统。选择ZigBee XBee平台作为WANET系统是因为它的覆盖范围容量和功率效率。此外,XBee设计为启用安全身份验证,允许其他单元加入或离开网络。每个Solis Flores都有一个主微控制器来监测土壤湿度和pH值。在有压力的情况下,微控制器将被警告,消息将通过网络广播。作为网络协调器的用户可以访问田地的状态并监测作物的健康状况。这些数据可以记录在外部存储器中,以便进行季节性评估和跟踪。通过成功的实施,可以进一步探索植物生理学与技术推广的结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solis Flores
Solar energy is harvested, traditionally, either through photovoltaic technology or through the ingestion of crops. Since the two functions are utilized in distinct areas of human lives, it is assumed the two cannot coexist. This paper proposes a design for the integration of photovoltaic technology and plant physiology. The Solis Flores is an autonomous solar panel powered system that is intercropped within agricultural fields. This plant inspired photovoltaic system is synchronized with the agricultural crop fields by monitoring their health statuses. The Solis Flores surveys soil moisture levels and pH levels to manage and improve the agricultural plant health without competing for land. Through the inspiration of plant anatomy and function, the Solis Flores utilizes solar energy as its source energy, and rooted sensors to analysis possible health contingencies then communicate to the user the status of the field. The Solis Flores' solar panels, resembling the leaves and flowers of a plant, is designed to sun track and optimize the collection of solar energy. The circuitry is protected by a housing unit resembling a pot which also host the internal battery storage powering the complete system. The Solis Flores implements a wireless ad hoc network or WANET and a sensor based plant health monitoring system to an autonomous solar panel system. The ZigBee XBee platform is the WANET system chosen due to its range capacity and power efficiency. In addition, the XBee is designed to enable a security authentication allowing additional units to join or leave the network. Each Solis Flores has a master microcontroller which will monitor the soil moisture and pH level. Under stressful situations the microcontroller will be alerted and the message will be broadcasted across the network. The user as coordinator of the network can access the status of the field and monitor the crop health. This data can be logged in an external storage for seasonal evaluation and tracking. Through the successful implementation, the union between plant physiology and the technological expansion can be further explored.
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