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101.
建立了一种对称电极组交流电渗流微泵结构,通过改变相邻电极间的AC信号相位,可以方便地实现对微通道流向的控制。根据双电层离子数的空间位阻效应修正,数值求解了双电层Poisson-Boltzmann方程和液体流动Navier-Stokes方程,得到了对称电极组交流电渗微泵的流动特性。分析了微泵流速与交流电压幅值、频率等参数的关系特性,并与双电层Debye-Hückel线性解进行比较。结果表明,空间位阻效应修正在低电压时与Debye-Hückel线性解一致,但是在高电压时会产生高频反向流。 相似文献
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103.
C. X. Wang N. Maeda M. Hiroki T. Tawara T. Makimoto T. Kobayahsi T. Enoki 《Journal of Electronic Materials》2005,34(4):361-364
AlGaN/GaN-based metal-insulator-semiconductor heterostructure field-effect transistors (MIS-HFETs) with Al2O3/Si3N4 bilayer as insulator have been investigated in detail, and compared with the conventional HFET and Si3N4-based MIS-HFET devices. Al2O3/Si3N4 bilayer-based MIS-HFETs exhibited much lower gate current leakage than conventional HFET and Si3N4-based MIS devices under reverse gate bias, and leakage as low as 1×10−11 A/mm at −15 V has been achieved in Al2O3/Si3N4-based MIS devices. By using ultrathin Al2O3/Si3N4 bilayer, very high maximum transconductance of more than 180 mS/mm with ultra-low gate leakage has been obtained in the MIS-HFET
device with gate length of 1.5 μm, a reduction less than 5% in maximum transconductance compared with the conventional HFET
device. This value was much smaller than the more than 30% reduction in the Si3N4-based MIS device, due to the employment of ultra-thin bilayer with large dielectric constant and the large conduction band
offset between Al2O3 and nitrides. This work demonstrates that Al2O3/Si3N4 bilayer insulator is a superior candidate for nitrides-based MIS-HFET devices. 相似文献
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105.
Constantine Kyriakopoulos Petros Nicopolitidis Georgios Papadimitriou Emmanouel Varvarigos 《International Journal of Communication Systems》2020,33(14)
Elastic optical networks emerge as a reliable backbone platform covering the next‐generation connectivity requirements. It consists of advanced enabling components that provide the ability for extensive configuration leading to performance improvement in many areas of interest. Higher layer analytics like data from IP traffic prediction can assist in the process of allocating resources at the optical layer. This way, light connections are established more efficiently while targeting specific performance goals. For that purpose, an algorithm is designed and evaluated that exploits traffic prediction of data transfers between nodes of an optical metro or backbone network. Next, it utilizes adaptive functionality based on particle swarm optimization to find paths with available spectrum resources. These resources can facilitate more efficiently the future traffic demand, since traffic prediction data are considered when finding the related paths. The innovative resource allocation method is evaluated using small and very large real topologies. It scales (in execution time and resource usage) according to node increase, executes in feasible time frames, and reduces transponder utilization resulting to increased energy efficiency. 相似文献
106.
Melanie H. Bowler Aditya Mishra Austen C. Adams Corinne L.‐D. Blangy Jason D. Slinker 《Advanced functional materials》2020,30(33)
Light‐emitting electrochemical cells (LECs) are devices that utilize efficient ion redistribution to produce high‐efficiency electroluminescence in a simple device architecture. Prototypical polymer LECs utilize three components in the active layer: a luminescent conducting polymer, a salt, and an electrolyte. Similarly, many small‐molecule LECs also utilize an electrolyte to disperse salts. In these systems, the electrolyte is incorporated to efficiently conduct ions and to maintain phase compatibility between all components. However, certain LEC approaches and materials systems enable device operation without a dedicated electrolyte. This review describes the general methods and materials used to circumvent the use of a dedicated electrolyte in LECs. The techniques of synthetically coupling electrolytes, incorporating ionic liquids, and introducing inorganic salts are presented in view of research efforts to date. The use of these techniques in emerging classes of light‐emitting electrochemical cells is also discussed. These approaches have yielded some of the most efficient, long‐lasting, and commercially applicable LECs to date. 相似文献
107.
108.
为保证MIMO异构网络面临多天线主动窃听时的安全性,该文提出一种基于人工噪声的抗主动窃听者的鲁棒安全传输方案。首先,考虑窃听者发送上行导频干扰的情形,研究了其发送的上行导频干扰对合法用户信道估计的影响。随后,基于信道估计结果对宏基站、微基站的下行数据与噪声信号的预编码矩阵进行设计,并推导了此种情形下系统安全速率的表达式。然后,以系统安全速率最大化为目标对基站的下行数据与噪声信号的发送功率进行优化设计,并提出一种基于1维线性搜索的求解方法。进一步地,考虑窃听者在发送上行导频干扰后,继而发送噪声干扰用户下行通信的情形,提出一种基于离散零和博弈方法来获取最优的发送功率设计。仿真结果验证了所提方案的安全性和鲁棒性。 相似文献
109.
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分析目前校园网络存在的问题,以某高校的校园网建设为研究对象,通过整合校园网络资源,提出一种基于私有云计算的信息交互模型,该模型包含用户层、服务层和资源层,采用该模型可以满足用户随时随地通过Intemet进行海量信息访问互动.并享用快速、高质量的信息传输服务。 相似文献