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1.
随着社会的进步和发展,计算机网络通信技术已被应用到实际生活、生产的各个方面,对人们的生活、生产等产生了深刻的影响。为此,文章就计算机通信及网络远程控制技术在实际生活中的应用问题进行了探究,旨在借助先进科技促进社会实现更优质发展。 相似文献
2.
电动汽车充电时,且电池电量低于80%时,为了保证充电效率一般采用恒功率充电.在动态无线电能传输系统中,电动汽车的不断移动会导致发射线圈和接受线圈的互感系数变化,致使电动汽车充电不稳定.为实现恒功率充电,提出了一种基于模型预测控制(MPC)的动态无线电能传输系统(DWPT)恒功率输出的控制方法.通过对系统建立数学模型,对输出功率进行模型预测,建立最小化目标函数来获得期望输出功率所对应的最优占空比,使输出功率恒定.进行了模型预测控制的动态无线电能传输系统Simulink仿真,通过对比不同线圈互感系数下的输出功率,验证了该方法的可行性,并且通过搭建实物测得的数据也证实了该方法的可行性. 相似文献
3.
Sangmin Lee Biao Che Meiling Tai Wanzhao Li Shin-Hyun Kim 《Advanced functional materials》2021,31(42):2105477
Hydrogel shells that compartmentalize the water core from the aqueous surrounding provide molecular selectivity on size and charge in transmembrane transport. It is highly demanding to produce thin hydrogel shells to minimize diffusion length and maximize core volume. Here, internal osmosis in water-in-oil-in-water-in-oil (W/O/W/O) triple-emulsion droplets is used to produce thin hydrogel shells enclosing a large water core. The triple-emulsion droplets are prepared to have an ultrathin middle oil layer using a capillary microfluidic device. The innermost water droplet has a higher osmolarity than the outer water layer containing photopolymerizable hydrogel precursors, which pumps water from the outer layer to the core through the ultrathin oil layer by the osmosis. Therefore, the outer layer gets thinner and hydrogel precursors are enriched while the size of the triple-emulsion droplets remains unchanged. Through photopolymerization of precursors and phase transfer from oil to water, hydrogel shells enclosing water core are produced in the water environment; the oil layer is ruptured for molecular exchange through the shells. The thickness and composition of the hydrogel shells are precisely controllable by the osmotic conditions. The shells show a high permeation rate due to the thinness as well as controlled cut-off threshold of permeation for neutral and charged molecules. 相似文献
4.
Liting Yang Xiao Li Ke Pei Wenbin You Xianhu Liu Hui Xia Yonggang Wang Renchao Che 《Advanced functional materials》2021,31(35):2103971
Large interfacial resistance plays a dominant role in the performance of all-solid-state lithium-ion batteries. However, the mechanism of interfacial resistance has been under debate. Here, the Li+ transport at the interfacial region is investigated to reveal the origin of the high Li+ transfer impedance in a LiCoO2(LCO)/LiPON/Pt all-solid-state battery. Both an unexpected nanocrystalline layer and a structurally disordered transition layer are discovered to be inherent to the LCO/LiPON interface. Under electrochemical conditions, the nanocrystalline layer with insufficient electrochemical stability leads to the introduction of voids during electrochemical cycles, which is the origin of the high Li+ transfer impedance at solid electrolyte-electrode interfaces. In addition, at relatively low temperatures, the oxygen vacancies migration in the transition layer results in the formation of Co3O4 nanocrystalline layer with nanovoids, which contributes to the high Li+ transfer impedance. This work sheds light on the mechanism for the high interfacial resistance and promotes overcoming the interfacial issues in all-solid-state batteries. 相似文献
5.
Zaidatul Akmal Othman Zaida Zakaria Joseph Bagi Suleiman Victor Udo Nna Aminah Che Romli Wan Syaheedah Wan Ghazali Mahaneem Mohamed 《International journal of molecular sciences》2021,22(8)
Obesity and hyperlipidemia are major risk factors for developing vascular diseases. Bee bread (BB) has been reported to exhibit some biological actions, including anti-obesity and anti-hyperlipidemic. This study aims to investigate whether bee bread can ameliorate vascular inflammation and impaired vasorelaxation activity through eNOS/NO/cGMP pathway in obese rats. Forty male Sprague-Dawley rats were randomly divided into four groups (n = 10/group), namely: control (normal group), obese rats (OB group), obese rats treated with bee bread (0.5 g/kg/day, OB/BB group) and obese rats treated with orlistat (10 mg/kg/day, OB/OR group). The latter three groups were given a high-fat diet (HFD) for 6 weeks to induced obesity before being administered with their respective treatments for another 6 weeks. After 12 weeks of the total experimental period, rats in the OB group demonstrated significantly higher Lee obesity index, lipid profile (total cholesterol, triglyceride, low-density lipoprotein), aortic proinflammatory markers (tumor necrosis factor-α, nuclear factor-κβ), aortic structural damage and impairment in vasorelaxation response to acetylcholine (ACh). Bee bread significantly ameliorated the obesity-induced vascular damage manifested by improvements in the lipid profile, aortic inflammatory markers, and the impaired vasorelaxation activity by significantly enhancing nitric oxide release, promoting endothelial nitric oxide synthase (eNOS) and cyclic guanosine monophosphate (cGMP) immunoexpression. These findings suggest that the administration of bee bread ameliorates the impaired vasorelaxation response to ACh by improving eNOS/NO/cGMP-signaling pathway in obese rats, suggesting its vascular therapeutic role. 相似文献
6.
罗凡王龙祥郭少海钟海雁 《中国油脂》2020,45(3):110-114
通过不同微波功率和时间辐射油茶籽,测定油茶粕中茶皂素、蛋白质、粗多糖、总酚、糠氨酸含量以及DPPH自由基清除能力的变化规律,研究榨前微波处理对油茶粕活性成分及抗氧化性的影响。结果表明:随微波加热时间延长,低功率(245、420 W)微波处理油茶籽后,油茶粕中茶皂素含量稍有上升,随后下降;较高功率(560、700 W)微波处理后,茶皂素含量呈上升趋势;微波处理对油茶粕中蛋白质含量影响不大;微波处理后油茶粕中粗多糖含量整体呈下降趋势,但420、560、700 W处理20、5、10 min后含量分别比初始升高66.9%、79.6%和116.0%;微波处理后油茶粕中总酚含量呈先降低后升高再降低的趋势,且微波功率越高,总酚含量越高;微波功率较低(245 W)时,糠氨酸含量先降低后略有升高,微波功率较高(420、560、700 W)时,糠氨酸含量先升高后降低。245 W和700 W微波功率处理时油茶粕对DPPH自由基清除率先升高后降低,560 W时呈整体上升趋势,420 W呈波动状态。 相似文献
7.
针对连续查询位置服务中构造匿名区域未考虑语义位置信息导致敏感隐私泄露问题,通过设计[(K,θ)]-隐私模型,提出一种路网环境下面向连续查询的敏感语义位置隐私保护方案。该方案利用Voronoi图将城市路网预先划分为独立的Voronoi单元,依据用户的移动路径和移动速度,选择具有相似特性的其他[K-1]个用户,构建匿名用户集;利用匿名用户集用户设定的敏感语义位置类型和语义安全阈值,以及用户所处语义位置的Voronoi单元,构建满足[(K,θ)]-隐私模型的语义安全匿名区域,可以同时防止连续查询追踪攻击和语义推断攻击。实验结果表明,与SCPA算法相比,该方案在隐私保护程度上提升约15%,系统开销上降低约20%。 相似文献
8.
Zhang Yifei Li Jianzhong Che Shuanghang Tian Yanwen 《Metals and Materials International》2020,26(6):783-792
Metals and Materials International - In this present paper, the electropolishing behavior of Ti–6Al–4V alloy fabricated by additive manufacturing in chloride-containing ethylene glycol... 相似文献
9.
以二氧化硅为硬模板,采用碳化和硫化工艺制备出具有三维碗状结构的CoS_2/C复合材料.利用XRD,Raman和XPS研究了所制备材料的相组成,晶体结构,元素组成和价态.利用SEM和TEM对其微观形貌进行了表征,并采用电化学工作站分析了CoS_2/C作为超级电容器电极材料的电化学性能.结果表明:三维碗状结构CoS_2/C复合材料具有优良的电化学性能,在1 A/g的电流密度下比容量可以达到466 F/g.将CoS_2/C和N-rGO分别作为正极和负极组装的水系非对称超级电容器器件的电压窗口可以拓宽到1.6 V.该器件在0.5 A/g的电流密度下能量密度可以达到13.6 wh/kg,功率密度达到374.5 w/kg.在3 A/g的电流密度下经过5000次循环充放电后容量保持率达到了87%. 相似文献
10.
Deploy Efficiency Driven k-Barrier Construction Scheme Based on Target Circle in Directional Sensor Network 下载免费PDF全文
Fan Xing-Gang Che Zhi-Cong Hu Feng-Dan Liu Tao Xu Jin-Shan Zhou Xiao-Long 《计算机科学技术学报》2020,35(3):647-664
Journal of Computer Science and Technology - With the increasing demand for security, building strong barrier coverage in directional sensor networks is important for effectively detecting... 相似文献