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排序方式: 共有478条查询结果,搜索用时 187 毫秒
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花房内的温湿度变化直接影响到花卉的健壮生长,以C8051F330为核心设计一款简易的花房温湿度无线自动监控系统,可对花房内的温湿度进行实时自动监控,当花房内温湿度指标超过设定值时,系统发出声光报警。该系统温度测量范围为-55~125℃,精度为±4℃;相对湿度测量范围为10%~90%,精度为±5%。经测试,系统运行稳定,... 相似文献
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A video Monitor &Control system of tunnel based on DSP/BIOS is proposed,which is different from traditional video Monitor & Control system.It uses DSP to process image,and uses enhanced video input processor to qcquire image.This system satisfies all requirements of video supervision,and is a low cost system.It has a good application foreground.The system has been confirmed as a good veracity and practicability system through testing in the Zhongliang Mountain tunnel of Chongqing. 相似文献
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Aiming at the free-riding problem in team incentive, this paper designs a dynamic incentive mechanism based on implicit side contract with dynamic game theory by introducing the reasonable assumption that there is horizontal monitor in team production. The theoretic analysis indicates that the dynamic incentive mechanism, in which a strict group incentive compatibility contract is taken at the first stage and an individual incentive compatibility contract is taken at the second stage, can implement team cooperation uniquely in the general condition of risk aversion and stochastic production by only two stage repeated game. 相似文献
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机器视觉技术在精细农业中的研究进展 总被引:2,自引:0,他引:2
精细农业以节约投入、增加产出、提高投入物利用率、减少环境污染为目的.快速、准确地采集各种农田信息,有效地监测农业对象是实施精细农业的重要基础.机器视觉技术由于其非破坏性、精度高、成本效率高、信息量大、灵活等特点,在精细农业中得到了广泛的应用.为此,通过对大量参考文献进行分析,发现机器视觉在精细农业中的主要研究方向集中在农业机械自动导航、作物生长信息检测、变量控制等方面.同时,对机器视觉技术在上述领域中的研究情况进行分析和总结,并讨论了未来机器视觉技术在精细农业中应用存在的问题以及发展前景. 相似文献
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白云山水库调度管理系统 总被引:1,自引:0,他引:1
针对江西省吉安市白云山水库自建的局域网的特点,研制开发了水库调度管理系统软件。简要介绍在Power Builder平台上开发的水库调度管理系统软件中有关电力部分的主要功能和系统软件开发要点,重点介绍实现实时监控、报表制作等功能的关键技术,并介绍了四的技术关键。 相似文献
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Deborah C. Silverstein DVM DACVECC Janet Aldrich DVM Steve C. Haskins DVM MS DACVECC DACVA Kenneth J. Drobatz DVM MSCE DACVECC DACVIM Larry D. Cowgill DVM PhD DACVIM 《Journal of Veterinary Emergency and Critical Care》2005,15(3):185-192
Objective: To determine the continuous changes in blood volume in response to fluid administration using an in‐line hematocrit monitor. Design: Prospective study. Setting: Research laboratory. Animals: Four healthy dogs. Interventions: Each dog received intravenous boluses of 80 mL/kg of 0.9% saline (S), 4 mL/kg of 7.5% saline (HS), 20 mL/kg of dextran 70 (D), 20 mL/kg of hetastarch (HES), or no fluids (control, C) on separate occasions. Fluids were administered at 150 mL/min in the S, D, and HES groups, and at 1 mL/kg/min in the HS group. Measurements and main results: Blood volume changes were measured every 20 seconds for 240 minutes using an in‐line hematocrit monitor. There was a rapid rise in blood volume during all infusions. Immediately after the administration of crystalloid fluids, the rapid rise in blood volume ceased. Subsequently, there was a steep decline in blood volume for 10 minutes, and a slower decline thereafter. In contrast, the rise in blood volume continued for at least 10 minutes after the infusion of the colloids was complete, and a plateau was observed for the remainder of the experiment. The blood volume effect, as measured by area under the curve, was significantly greater in the saline group than the other groups during the infusion time and for the 0–240 minutes time period. The areas under the curve for the two colloid solutions were not significantly different from each other during any time periods. The percent increase in blood volume immediately following the infusions was 76.4±10.0 in the S group, 17.1±3.2 in the HS group, 23.0±10.5 in the D group, and 27.2±6.4 in the HES group. At 30 minutes from the start of the infusion, the mean percent increases in blood volumes were 35.2±9.3 in the S group, 12.3±0.9 in the HS group, 35.9±7.3 in the D group, and 36.8±6.5 in the HES group. At 240 h post‐infusion, the mean percent increases in blood volume were 18.0±9.7 in the S group, 2.9±6.1 in the HS group, 25.6±16.1 in the D group, and 26.6±8.6 in the HES group. The C group had a mean percent change in blood volume of ?3.7±3.4 at the end of the experiment. Conclusions: This study indicates that the rapid administration of saline at clinically relevant doses leads to the largest immediate increase in blood volume, although this change is transient because of rapid redistribution of the fluid. Despite a brief increase in blood volume that was almost 3 times the volume administered, hypertonic saline led to the smallest increase in blood volume post‐infusion. The synthetic colloid solutions increased the blood volume by an amount greater than that infused and the effect was sustained for a longer period of time than seen following crystalloid administration, but the maximum increase in blood volume was significantly less than saline. The measurement of continuous changes in blood volume, using an in‐line hematocrit monitor, was a useful means of assessing the dynamic effects of fluid administration in dogs in a research setting. 相似文献
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应用硫氟磺酰胺毒饵防治红火蚁 总被引:9,自引:0,他引:9
应用硫氟磺酰胺毒饵在广西陆川防治25hm^2红火蚁的结果表明,施药后3d蚁巢内即有红火蚁个体死亡。施药后7、14、21d的防治效果分别可达81.5%,93.9%和100%;施药后余下的顽固蚁巢和7d后出现的新蚁巢经再度施药后14d全部死亡;从5月23日到11月25日蚁群全部死亡的5欢监测、调查,既诱捕不到工蚁,也没有发现新蚁巢。因此,硫氟磺酰胺毒饵不仅具有高效、快速、安全、使用方便等特点,而且硫氟磺酰胺的应用完全可以取代目前国外普遍使用的二步施药法中的灌巢法。 相似文献