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    • 17. 发明申请
    • System and Method to Generate Secure Name Records
    • 生成安全名称记录的系统和方法
    • US20130198385A1
    • 2013-08-01
    • US13360697
    • 2012-01-28
    • Liang HanYang Yang
    • Liang HanYang Yang
    • G06F15/173
    • H04L43/0817H04L12/6418H04L29/12066H04L29/12594H04L41/5058H04L61/1511H04L61/302H04L61/609
    • A method to generate name records by a service gateway includes: receiving a name service request including a name from a host; creating a name service request using the name; sending the name service request to a name service server; receiving a response from the name service server, the response including a service server name record with one or more service server name entries corresponding to the name; generating and storing service gateway name records using the name and the name entries; and sending a selected service gateway name record to the host as a response to the name service request. When a subsequent name service request including the name is received, the service gateway compares the name against the stored service gateway name records, and in response to finding a match, sending the given service gateway name record as a response to the subsequent name service request.
    • 由服务网关生成名称记录的方法包括:从主机接收包括名称的名称服务请求; 使用名称创建名称服务请求; 向名称服务服务器发送名称服务请求; 从所述名称服务服务器接收响应,所述响应包括具有与所述名称对应的一个或多个服务服务器名称条目的服务服务器名称记录; 使用名称和名称条目生成和存储服务网关名称记录; 并向所述主机发送所选择的服务网关名称记录作为对所述名称服务请求的响应。 当接收到包含该名称的后续名称服务请求时,服务网关将该名称与存储的服务网关名称记录进行比较,并且响应于找到匹配,发送给定服务网关名称记录作为对随后的名称服务请求的响应 。
    • 18. 发明申请
    • Method and Apparatus for Locating and Decoding Machine-Readable Symbols
    • 用于定位和解码机器可读符号的方法和装置
    • US20130153665A1
    • 2013-06-20
    • US13526819
    • 2012-06-19
    • Yang Yang
    • Yang Yang
    • G06K7/10
    • G06K7/1443
    • For recognizing two-width barcodes having N bars and N spaces, a first class (cluster) A of wide bars or spaces contains n elements Array [1] to Array [n], and a second class (cluster) B of narrow bars or spaces contains N−n elements Array [n+1] to Array [N] are created. Looping n times where n=1 to N−1, a mean value μA to of class A and a mean value μB of class B are calculated, a between-class difference D=μA−μB is calculated, a value of n when D achieves a maximum value is recorded, and if n=M when D achieves the maximum value, then the N bars or spaces are recognized as a two-width barcode; otherwise, the N bars or spaces are determined as not a two-width barcode.
    • 为了识别具有N条和N个空格的双宽度条形码,宽条形或空格的第一类(簇)A包含n个元素Array [1]到Array [n],第二个类(簇)B为窄条或 空格包含Nn个元素Array [n + 1]到Array [N]。 循环n次,其中n = 1到N-1,计算A类的平均值muA至B类的平均值μB,计算类间差D = muA-muB,D时的值n 达到最大值被记录,如果在D达到最大值时n = M,则N条或空格被识别为双宽度条形码; 否则,N个条或空格被确定为不是双宽度条形码。
    • 19. 发明授权
    • Use of lipo chitooligosaccharides to initiate early flowering and fruit development in plants and related methods and compositions
    • 使用脂质壳低聚糖引发植物早期开花和果实发育及相关方法和组合物
    • US08415275B2
    • 2013-04-09
    • US10554028
    • 2004-04-22
    • Chunquan ChenEwa Maria CholewaJohn David McIverBirgit Carolyn SchultzYang Yang
    • Chunquan ChenEwa Maria CholewaJohn David McIverBirgit Carolyn SchultzYang Yang
    • A01N37/00
    • A01N43/16A01N63/02Y02A40/143A01N25/00
    • The present invention relates to the use of LCOs in initiating earlier flowering, increased number of buds and flower buds and earlier fruit development in non legume and legume plants, as compared to flowering and fruit development under conditions without use of LCOs, and the enhancement of plant growth and yield associated therewith; to compositions comprising an effective amount of at least one LCO and agriculturally acceptable carriers, associated with earlier flowering, increased bud and flower numbers and earlier initiation of fruit development as compared to conditions without use of LCOs, and with increased growth and plant yield; and to methods using LCOs and compositions of one or more LCOs and agriculturally acceptable carriers, associated with earlier flowering initiation, increased bud and flower numbers and earlier fruit development in both legume and non-legume crop plants as compared to conditions without use of LCOs and associated enhancement of growth and yield.
    • 本发明涉及在不使用LCO的情况下,在开花和果实发育的条件下,在不使用LCO的情况下,LCO用于开始早期开花,增加数目的芽和花芽以及非豆科植物和豆科植物中较早的果实发育, 植物生长和产量相关; 包括有效量的至少一种LCO和农业上可接受的载体,与早期开花,增加的芽和花数相关,并且与不使用LCO的条件相比较早开始果实发育,并且具有增加的生长和植物产量; 以及与未使用LCO的条件相比,使用与早期开花开始相关的LCO和LCO以及一些或多种LCO和农业上可接受的载体的组合物的方法,所述LCO和农药可接受的载体与豆科植物和非豆科植物中的芽和花数增加和较早的果实发育相关, 相关的生长和产量增强。
    • 20. 发明申请
    • Cognitive SIMO Network Access Method Based on Cooperative Relay
    • 基于合作继电器的认知SIMO网络接入方法
    • US20130065511A1
    • 2013-03-14
    • US13520171
    • 2011-06-30
    • Qihui WuJinlong WangYang YangYuming Zhang
    • Qihui WuJinlong WangYang YangYuming Zhang
    • H04B15/00H04B7/14
    • H04W72/082H04B7/026
    • The invention relates to a cognitive SIMO network access method based on cooperative relay, wherein a cognitive base station collects channel responses in a network and judges whether the cognitive users can cooperate with a primary user to achieve the target transmission rate required by the primary user or not, if so, a cognitive SIMO network is accessible to a frequency band licensed to the primary user; otherwise, the cognitive SIMO network is non-accessible. The access method can enable a plurality of the cognitive users and the primary user to simultaneously use the same licensed spectrum in the same geographical position, on the premise of ensuring the target transmission rate of the primary user, and further improve the utilization efficiency of the spectrum as far as possible. As the access method is based on cooperative communication, the nearer the distance from the cognitive network to the primary network is, the greater the network throughput can be achieved; and furthermore, a large-range network coverage can be realized, so the deficiencies in the existing cognitive radio access ways are made up.
    • 本发明涉及一种基于协同中继的认知SIMO网络接入方法,其中认知基站收集网络中的信道响应,并判断认知用户是否可以与主用户协作以实现主用户所要求的目标传输速率, 如果是这样,则认证SIMO网络可以被许可给主用户的频带访问; 否则,认知SIMO网络是不可访问的。 在确保主用户的目标传输速率的前提下,访问方法可以使多个认知用户和主用户在相同地理位置同时使用相同的许可频谱,并进一步提高主用户的使用效率 频谱尽可能。 由于接入方式是基于协作通信,距离认知网络到主网络的距离越近,网络吞吐量越大; 此外,可以实现大范围的网络覆盖,从而弥补了现有的认知无线电接入方式的缺陷。