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排序方式: 共有112条查询结果,搜索用时 15 毫秒
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针对已有方形喷洒域喷头存在喷灌均匀系数低、方形程度差、转动过程精度不高等问题,设计了一种适用于方形喷洒的新型喷灌装置.该装置主要由控制模块、工作模块和喷头组成;通过滚子与空间凸轮的接触,调节喷头仰角,改变射程,实现方形区域的喷洒;采用单片机控制装置的旋转速度,以提高喷灌均匀度.在工作压力0.20 MPa、流量1.30 ... 相似文献
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In the southern United States, corn production encounters moisture deficit coupled with high‐temperature stress, particularly during the reproductive stage of the plant. In evaluating plants for environmental stress tolerance, it is important to monitor changes in their physical environment under natural conditions, especially when there are multiple stress factors, and integrate this information with their physiological responses. A low‐cost microcontroller‐based monitoring system was developed to automate measurement of canopy, soil and air temperatures, and soil moisture status in field plots. The purpose of this study was to examine how this system, in combination with physiological measurements, could assist in detecting differences among corn genotypes in response to moisture deficit and heat stress. Three commercial hybrids and two inbred germplasm lines were grown in the field under irrigated and non‐irrigated conditions. Leaf water potential, photosynthetic pigments, cell membrane thermostability (CMT) and maximum quantum efficiency of photosystem II (Fv/Fm) were determined on these genotypes under field and greenhouse conditions. Variations observed in air and soil temperatures, and soil moisture in plots of the individual corn genotypes helped explain their differences in canopy temperature (CT), and these variations were reflected in the physiological responses. One of the commercial hybrids, having the lowest CT and the highest CMT, was the most tolerant among the genotypes under moisture deficit and heat stress conditions. These results demonstrated that the low‐cost microcontroller‐based monitoring system, in combination with physiological measurements, was effective in evaluating corn genotypes for drought and heat stress tolerance. 相似文献
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文章主要介绍以dsPIC30F5011单片机在风机监控分站中的应用。风机监控分站对风机监控系统中各个设备的运行状态进行实时在线监控,确保风机正常运行。 相似文献
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文章介绍了以ATmega8单片机作为核心控制芯片,采用PWM控制方式,应用PID控制算法,通过直流电机驱动芯片LM298和霍尔传感器实现的速度反馈闭环控制系统,给出了硬件电路和相应的软件设计. 相似文献