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    • 1. 发明公开
    • Method for routing packet in wireless sensor network
    • 在无线传感器网络中路由数据包的方法
    • KR20120011224A
    • 2012-02-07
    • KR20100072951
    • 2010-07-28
    • UNIV SUNGKYUNKWAN FOUND
    • CHOO HYUN SEUNGBAE DONG JU
    • H04W40/02H04L12/28H04W84/18
    • H04W40/125H04W84/18
    • PURPOSE: A method for routing a packet in a sensor network is provided to transmit data and an ACK packet through a route which minimizes opportunity costs. CONSTITUTION: A first node calculates second opportunity transmission costs using a second expected average packet transmission frequency and a second expected transmission hop number. The first node transmits a data packet to a second node with minimum second opportunity transmission costs wherein the second node is from neighbor nodes of the first node. The first node selects a source node(10) as a temporary destination node. The first node calculates third opportunity transmission costs about the neighbor nodes of the first node. The first node transmits a receiving confirmation packet to a third node with a minimum third opportunity transmission costs.
    • 目的:提供一种在传感器网络中路由数据包的方法,以通过使机会成本最小化的路由传输数据和ACK数据包。 构成:第一节点使用第二期望平均分组传输频率和第二预期传输跳数来计算第二机会传输成本。 第一节点以最小的第二机会传输成本将数据分组发送到第二节点,其中第二节点来自第一节点的邻居节点。 第一节点选择源节点(10)作为临时目的地节点。 第一节点计算关于第一节点的邻居节点的第三机会传输成本。 第一节点以最小的第三次机会传输成本向第三节点发送接收确认分组。
    • 4. 发明授权
    • EXENDIN DERIVATIVE LINKED BIOTIN, METHOD FOR THE PREPARATION THEREOF AND PHARMACEUTICAL COMPOSITION COMPRISING THE SAME
    • 维生素衍生物链接生物素,其制备方法和包含其的药物组合物
    • KR100864584B1
    • 2008-10-24
    • KR20080016833
    • 2008-02-25
    • UNIV SUNGKYUNKWAN FOUND
    • LEE KANG CHOONCHAE SU YOUNGJIN CHENG HAO
    • C07K14/575C07K14/46
    • C07K14/57563
    • Biotin-linked exendin derivatives are provided to increase in vivo stability and in vivo retention time of exendin, and promote absorption of exendin through mucous membrane, so that they are useful for treating diseases caused by insulin oversecretion, blood glucose lowering, gastric or bowel movement inhibition, gastric or bowel empty inhibition, and digestion inhibition. A biotin-linked exendin derivatives have biotin in any one of a 12nd lysine residue and a 27th lysine residue of exendin 4 represented by SEQ ID NO:2. A method for preparing the biotin-linked exendin derivatives comprises the steps of: (i) adding exendin 4 of SEQ ID NO:2, biotin and reducing agent into buffer solution or organic solvent and reacting them; (ii) storing the reacting mixture at a certain temperature in a dark room; (iii) after reaction of step (ii), removing unreacted products; and (iv) separating and purifying the biotin-linked exendin. A method for treating diabetes such as type 2 diabetes comprises the biotin-linked exendin derivatives.
    • 提供生物素连接的毒蜥外泌激素衍生物以增加毒蜥外泌肽的体内稳定性和体内保留时间,并促进毒蜥外泌肽通过粘膜的吸收,使其可用于治疗由胰岛素过分泌,降血糖,胃或肠运动引起的疾病 抑制,胃或肠空的抑制和消化抑制。 生物素连接的毒蜥外泌肽衍生物在SEQ ID NO:2所示的第12赖氨酸残基和毒蜥外泌肽4的第27赖氨酸残基中的任一个中具有生物素。 制备生物素连接的毒蜥外泌肽衍生物的方法包括以下步骤:(i)将SEQ ID NO:2的毒蜥外泌肽4,生物素和还原剂加入缓冲溶液或有机溶剂中并使其反应; (ii)将反应混合物在一定温度下储存在暗室中; (iii)步骤(ii)反应后,除去未反应的产物; 和(iv)分离和纯化生物素连接的毒蜥外泌肽。 用于治疗糖尿病如2型糖尿病的方法包括生物素连接的毒蜥外泌肽衍生物。
    • 6. 发明公开
    • Monolayer graphene powder using high temperature and inert heat treating and method of manufacturing the same
    • 使用高温和惰性热处理的单层石墨粉及其制造方法
    • KR20120051471A
    • 2012-05-22
    • KR20100112917
    • 2010-11-12
    • UNIV SUNGKYUNKWAN FOUNDLP NANO LAB CO LTD
    • LEE YOUNG HEEJIN MEIHUA
    • C01B31/02C01B31/04
    • C01B32/184B01J6/00C01B2204/02
    • PURPOSE: Mono-layered graphene powder and a method for manufacturing the same are provided to improve the crystallinity of graphene by thermally treating expanded graphene under high temperature inert atmosphere. CONSTITUTION: A method for manufacturing mono-layered graphene powder includes a process in which expanded graphene is thermally treating expanded graphene at a temperature between 1100 and 3000 degrees Celsius. The inert atmosphere is argon gas atmosphere or the vacuum state of 10^-9 to -10^-3 Torr. The temperature of the thermal treatment is in a range between 1100 and 1900 degrees Celsius. The expanded graphene is obtained by thermally treating graphite oxide under argon atmosphere. The graphite oxide is obtained by mixing the mixture of graphite and NaClO_3 with nitric acid, neutralizing the mixed solution in distilled water, and filtering the neutralized solution.
    • 目的:提供单层石墨烯粉末及其制造方法,以通过在高温惰性气氛下热处理膨胀的石墨烯来改善石墨烯的结晶度。 构成:用于制造单层石墨烯粉末的方法包括扩展石墨烯在1100至3000摄氏度之间的温度下热处理膨胀的石墨烯的方法。 惰性气氛为氩气气氛或真空状态为10 ^ -9至-10 ^ -3乇。 热处理的温度在1100和1900摄氏度之间。 膨胀的石墨烯通过在氩气氛下热处理氧化石墨获得。 通过将石墨和NaClO_3的混合物与硝酸混合,将蒸馏水中的混合溶液中和,过滤中和的溶液得到氧化石墨。
    • 8. 发明公开
    • SNARE COMPLEX FORMATION INHIBITING COMPOSITION COMPRISING NATURAL EXTRACTS
    • 复合形成抑制组合物包含天然提取物
    • KR20090041369A
    • 2009-04-28
    • KR20090024381
    • 2009-03-23
    • UNIV SUNGKYUNKWAN FOUND
    • KWEON DAE HYUKSHIN YEON KYUNJUNG CHANG HWA
    • A61K8/97A61Q19/08
    • A61K8/97A61K36/52A61K2236/33A61Q19/08Y10S514/844
    • A cosmetic composition containing flower extracts is provided to inhibit SNARE(soluble N-ethylmaleimide-sensitive factor attachment protein receptor) complex formation, control neutrotransmitter discharging and improve wrinkles. A cosmetic composition contains Platycarya strobilacea extracts as active ingredients so as to inhibit SNARE(soluble N-ethylmaleimide-sensitive factor attachment protein receptor) complex generation and control neutrotransmitter discharging. The Platycarya strobilacea extracts is obtained by water or C1-C4 alcohol. The C1-C4 alcohol represents methanol or ethanol. The cosmetic composition has a formulation selected from the group consisting of solution, colloidal suspension, oil emulsion, paste, gel, cream, lotion, powder, soap, surfactant-containing cleansing oil, powder foundation, emulsion foundation, wax foundation or spray.
    • 提供含有花提取物的化妆品组合物,以抑制SNARE(可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体)复合物形成,控制中性粒子发射体排出并改善皱纹。 化妆品组合物含有作为活性成分的洋甘菊提取物,以抑制SNARE(可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体)复合物产生和控制中性粒子放电。 Platycarya strobilacea提取物通过水或C1-C4醇获得。 C1-C4醇代表甲醇或乙醇。 化妆品组合物具有选自溶液,胶体悬浮液,油乳剂,糊剂,凝胶,霜剂,洗剂,粉末,皂,表面活性剂的清洁油,粉底,乳液粉底,蜡基或喷雾剂的组合物。
    • 9. 发明公开
    • Method for clock synchronization in distributed system having ring topology and apparatus for the same
    • 具有环形拓扑的分布式系统中的时钟同步方法及其设备的方法
    • KR20120051632A
    • 2012-05-22
    • KR20120048879
    • 2012-05-08
    • UNIV SUNGKYUNKWAN FOUND
    • JEON JAE WOOKJEON YONG HANSEO SUK HYUNKIM JIN HOSONG IL SEUK
    • H04L7/00H04L12/42
    • H04J3/0667H04L7/0012H04L7/0091H04L12/427
    • PURPOSE: A method for synchronizing a clock at a distributed system having a ring-shaped topology and an apparatus thereof are provided to have a ring-shaped topology having no offset calculation by transmitting a sync message and a follow up message to only one direction in a grand master. CONSTITUTION: A grand master connected to a plurality of slaves in a ring-shaped topology transmits a sync message to one direction. An initial transmitting time corresponding to a transmission point is saved(S1). The transmitted sync message is delivered to the plurality of slaves in order of being connected to the ring-shaped topology. The grand master receives the sync message from a slave which lastly receives the sync message(S2). A follow up message is received in order of being connected to the ring-shaped topology while passing through the plurality of slaves(S3). The plurality of slaves is successively synchronized with the grand master(S4).
    • 目的:提供一种用于在具有环形拓扑的分布式系统和其装置上同步时钟的方法,以具有通过仅向一个方向发送同步消息和跟踪消息的环形拓扑而不进行偏移计算 一个伟大的大师。 构成:连接到环形拓扑中的多个从站的大主机向一个方向发送同步消息。 保存对应于发送点的初始发送时间(S1)。 发送的同步消息按照连接到环形拓扑的顺序传送到多个从设备。 大主机从最后接收同步消息的从设备接收同步消息(S2)。 在通过多个从站(S3)时,按顺序连接到环形拓扑的顺序接收后续消息。 多个从站与盛大主机连续同步(S4)。
    • 10. 发明公开
    • Apparatus and method for detecting damage of filtration membrane using trans membrane pressure
    • 使用转移膜压力检测过滤膜的损伤的装置和方法
    • KR20120044079A
    • 2012-05-07
    • KR20100105480
    • 2010-10-27
    • KOREA WATER RESOURCES CORPUNIV SUNGKYUNKWAN FOUND
    • KIM CHUNG HWANLIM JAE LIMKANG SUK HYUNGKIM HYUNG SOOLEE YONG SOO
    • B01D65/10B01D65/08
    • B01D65/104B01D63/00B01D65/08
    • PURPOSE: An apparatus and a method for detecting the damage of a filtering membrane based on the transmembrane pressure of the filtering membrane are provided to improve the detection precision of the apparatus by increasing pressure loss rate if the filtering membrane is damaged. CONSTITUTION: Membrane module includes a plurality of filtering membranes. Feed water is positioned at an external first side of the membrane module based on the surfaces of filtering membranes. Filtered water is positioned at an internal second side of the membrane module based on the surfaces of the filtering membranes. The feed water and the filtered water are discharged to the outside of the membrane module(S101). The first side and the second side of the membrane module are maintained in gaseous state(S102). Positive pressures are formed by injecting air to the first side of the membrane module(S103). Negative pressures are formed by sucking air to the second side of the membrane module(S104). Transmembrane pressure between the first side and the second side of the membrane module is increased to a pre-set value. The changing rate of the transmembrane pressure by lapse of time is measured(S105). Whether the filtering membranes are damaged is verified by comparing the measured changing rate of the transmembrane pressure to the pre-set value(S106).
    • 目的:提供一种基于过滤膜的跨膜压力来检测过滤膜的损伤的装置和方法,以便如果过滤膜损坏则通过增加压力损失率来提高装置的检测精度。 构成:膜组件包括多个过滤膜。 进料水基于过滤膜的表面定位在膜组件的外部第一侧。 过滤水基于过滤膜的表面定位在膜组件的内部第二侧。 进料水和过滤水排出到膜组件的外部(S101)。 膜组件的第一面和第二面保持气态(S102)。 通过向膜组件的第一侧注入空气形成正压力(S103)。 通过将空气吸入膜组件的第二侧而形成负压(S104)。 膜组件的第一侧和第二侧之间的跨膜压力增加到预定值。 测量跨膜压力随时间的变化率(S105)。 通过将测量的跨膜压力的变化率与预设值进行比较来验证过滤膜是否损坏(S106)。