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    • 62. 发明公开
    • METHOD AND APPARATUS OF ALLOCATING RESOURCES FOR TERMINAL IN WIRELESS COMMUNICATION SYSTEM
    • 方法和设备配置资源为终端在无线通信系统
    • EP3032899A1
    • 2016-06-15
    • EP15199510.7
    • 2015-12-11
    • Samsung Electronics Co., LtdKorea University Research and Business Foundation
    • PARK, YongseokKIM, HwangnamLEE, ChulhoKIM, MinKIM, HyunsoonLEE, WoongheeLEE, Joon Yeop
    • H04W72/02
    • H04W72/048H04W72/02
    • Provided are a method and apparatus of allocating resources for a terminal. The terminal is able to effectively allocate communication resources to individual processes run by the user. The resource allocation method for a terminal may include updating a list of running processes on the basis of information related to one or more processes, determining the amount of resources for each process listed in the list of running processes according to priority information of the process related information, and allocating resources to at least one process listed in the list of running processes according to the determined resource amounts. Accordingly, throughputs of individual processes in the terminal can be adjusted so as to support the quality of communication of a process having a high priority.The present disclosure relates to communication methods and systems that achieve convergence of 5G communication systems supporting even higher data rates after 4G systems and loT technologies. Based on loT technologies, the present disclosure may be applied to various intelligent services, such as smart homes, smart buildings, smart cities, smart or connected cars, health-care applications, digital education applications, retail business applications, and security and safety services.
    • 提供了用于一个终端分配资源的方法和装置。 终端能够有效地分配的通信资源向用户运行单个进程。 用于终端的资源分配方法可以包括更新的信息有关的一个或多个进程,确定性的开采在跑步的列表中列出的每个进程的资源量的基础上运行的进程的列表处理雅丁到过程相关的优先级信息 信息,并在运行gemäß的确定性开采资源量的进程列表中列出的至少一个进程分配资源。 因此,在终端各个处理的吞吐量可被调整,以便支持具有高priority.The本发明涉及通信方法和系统并实现支撑后甚至更高的数据速率5G通信系统的收敛的过程的通信质量 4G系统和批号的技术。 基于的IoT技术,本发明可以应用到各种智能服务,颜色:如智能家居,智能楼宇,智能城市,智能或连接汽车,医疗保健应用,数字化教育应用,零售业务的应用,以及安保和安全服务 ,
    • 70. 发明公开
    • Method for fabricating multi-component nanowires
    • Verfahren zur Herstellung von Ge-Sb-TeNanodrähten
    • EP2204474A1
    • 2010-07-07
    • EP09011927.2
    • 2009-09-18
    • Korea University Research and Business Foundation
    • Kim, Young KeunJi, Hye MinAn, Boo HyunCho, Moon KyuMin, Ji Hyun
    • C25D1/04C30B7/12C30B29/46C30B29/62
    • C30B7/12C25D1/04C30B29/46C30B29/60
    • A method for fabricating multi-component nanowires is disclosed, which can make multi-component nanowires used to realize a nanowire-based memory device by an electroplating process using a multi-component solution. The method for fabricating multi-component nanowires in accordance with the present invention includes the steps of: (a) preparing an anodized aluminum oxide nanotemplate having a plurality of pores; (b) forming an electrode layer on one surface of the anodized aluminum oxide nanotemplate; (c) injecting the anodized aluminum oxide nanotemplate in a predetermined multi-component solution and then growing multi-component nanowires through the pores of the anodized aluminum oxide nanotemplate by an electroplating process in which the anodized aluminum oxide nanotemplate is used as a cathode; and (d) removing the anodized aluminum oxide nanotemplate.
    • 公开了一种制造多组分纳米线的方法,其可以通过使用多组分溶液的电镀工艺制造用于实现基于纳米线的存储器件的多组分纳米线。 根据本发明的制造多组分纳米线的方法包括以下步骤:(a)制备具有多个孔的阳极化氧化铝纳米模板; (b)在阳极化氧化铝纳米模板的一个表面上形成电极层; (c)将阳极氧化的氧化铝纳米模板注入预定的多组分溶液中,然后通过电镀工艺将阳极氧化的氧化铝纳米模板用作阴极,然后通过阳极氧化的氧化铝纳米模板的孔生长多组分纳米线; 和(d)去除阳极氧化的氧化铝纳米模板。