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    • 54. 发明申请
    • DETECTING MOTION REGIONS IN A SCENE USING AMBIENT-FLASH-AMBIENT IMAGES
    • 使用环形闪光灯图像检测场景中的运动区域
    • WO2016126489A1
    • 2016-08-11
    • PCT/US2016/015170
    • 2016-01-27
    • QUALCOMM INCORPORATED
    • REZAIIFAR, Ramin
    • G06T7/20
    • G06T7/0042G06T7/20G06T7/215G06T7/254G06T7/73G06T11/60G06T2207/20221H04N5/2256H04N5/23212H04N5/2353
    • Systems and methods described herein can compensate for aberrations produced by a moving object in an image captured using a flash. In some embodiments, a method includes capturing a first image at time t-?t1, where ?t1 represents the time difference between capturing the first image and capturing the second image, capturing the second image at a time t, the second image captured using a flash. The method also includes capturing a third image at a time t+?t2, where ?t2 represents the time difference between capturing the second image and capturing the third image, determining motion information of an object that is depicted in the first, second and third image, and modifying at least one portion of the second image using the motion information and a portion of the first image, a portion of the third image, or a portion of the first image and a portion of the third image.
    • 本文描述的系统和方法可以补偿使用闪光捕获的图像中由移动物体产生的像差。 在一些实施例中,一种方法包括:在时间t-t1处拍摄第一图像,其中Δt1表示拍摄第一图像和拍摄第二图像之间的时间差,在时间t拍摄第二图像,使用 一闪一闪 该方法还包括在时间t +Δt2处拍摄第三图像,其中Δt2表示拍摄第二图像和拍摄第三图像之间的时间差,确定在第一图像,第二图像和第三图像中描绘的对象的运动信息 以及使用运动信息和第一图像的一部分,第三图像的一部分或第一图像的一部分和第三图像的一部分来修改第二图像的至少一部分。
    • 56. 发明申请
    • AGGREGATING MULTIPLE AIR INTERFACES WITH A MULTI-LINK PROTOCOL
    • 使用多链路协议来聚合多个空中接口
    • WO2003103332A1
    • 2003-12-11
    • PCT/US2003/017113
    • 2003-05-29
    • QUALCOMM INCORPORATED
    • BENDER, Paul E.REZAIIFAR, Ramin
    • H04Q7/38
    • H04L69/16H04L63/08H04L63/101H04L69/14H04L69/168H04W8/26H04W12/06H04W76/11H04W76/15H04W88/10
    • Techniques for aggregating multiple air interfaces to achieve higher data rates using standard link interfaces and a single user identifier are disclosed. In one aspect, each of a plurality of radio elements (210) is associated with a unique link identifier and a common subscriber identifier. In another aspect, a base station (104) authenticates a radio element by comparing a transmitted link identifier with a list of link identifiers accessed from a subscriber database (410) indexed by subscriber identifier. In yet another aspect, a wireless connection (540) is linked with an access node (130) through an interface (530) distinguished by the link identifier. The connection can be merged with other connections in a multi-link protocol (510). These aspects have benefits including allowing multiple devices to be supported with one subscriber identifier, achieving higher data rates due to aggregation of multiple links using standard interfaces, a single record per subscriber, and others.
    • 公开了用于聚合多个空中接口以使用标准链路接口和单个用户标识符来实现更高数据速率的技术。 在一个方面,多个无线电元件(210)中的每一个与唯一链路标识符和公共订户标识符相关联。 在另一方面,基站(104)通过将发送的链路标识符与从用户标识符索引的订户数据库(410)访问的链路标识符的列表进行比较来认证无线电元件。 在另一方面,无线连接(540)通过由链路标识符区分的接口(530)与接入节点(130)链接。 连接可以与多链路协议中的其他连接合并(510)。 这些方面具有以下优点,包括允许使用一个用户标识符来支持多个设备,由于使用标准接口的多个链路的聚合,每个订户的单个记录等而实现更高的数据速率。
    • 59. 发明申请
    • METHOD AND APPARATUS FOR SERVICE AUTHORIZATION IN A COMMUNICATION SYSTEM
    • 通信系统中服务授权的方法和装置
    • WO2003026245A2
    • 2003-03-27
    • PCT/US2002/029717
    • 2002-09-18
    • QUALCOMM INCORPORATED
    • REZAIIFAR, RaminBENDER, Paul E.
    • H04L29/00
    • H04L12/2898G06Q40/00H04L63/10H04W4/00H04W12/08H04W28/18
    • Methods and apparatus for authorizing an access terminal (122(2) (AT) requesting a service provided by an entity in an access network are disclosed. After being authorized for a communication session with the access network, the AT addresses an inquiry to a domain name server (122(2) (DNS) for a contact of a service selector (118(2)) (SS) administering the desired service. A controller in the access network (108(3)) (BSC/PCF) routs the inquiry to and returns a response from the DNS. The AT then addresses a service query containing the AT's capabilities to the SS. The BSC/PCF directs attributes allowing the SS to authorize the service. Upon the SS's acknowledgement of the attributes, the BSC/PCF forwards to the SS the service query. Upon authorization, the SS notifies the BSC/PCF, and if the AT is authorized, selects in accordance with the AT's capabilities an appropriate service provider (120(2)) (SP) to provide the service.
    • 公开了授权接入终端(122(2)(AT))请求由接入网络中的实体提供的业务的方法和装置,在与接入网进行通信会话的授权之后,AT向域寻址 名称服务器(122(2)(DNS),用于管理所需服务的服务选择器(118(2))(SS)的联系人)。接入网络(108(3))中的控制器(BSC / PCF) 查询并返回DNS的响应,AT然后将包含AT的功能的服务查询寻址到SS,BSC / PCF指示允许SS授权服务的属性,在SS对属性确认后,BSC / PCF向SS转发服务查询,授权后,SS通知BSC / PCF,如果AT被授权,则根据AT的能力选择适当的服务提供商(120(2))(SP),以提供 服务。
    • 60. 发明申请
    • SYNCHRONIZATION OF STORED SERVICE PARAMETERS IN A COMMUNICATION SYSTEM
    • 存储服务参数在通信系统中的同步化
    • WO2002096139A1
    • 2002-11-28
    • PCT/US2002/016105
    • 2002-05-21
    • QUALCOMM INCORPORATED
    • HO, Sai, Yiu, DuncanTIEDEMANN, Edward, G., Jr.WANG, JunSINNARAJAH, RagulanREZAIIFAR, Ramin
    • H04Q7/32
    • H04L67/04H04L67/1095H04W8/22H04W8/24H04W76/11H04W76/18H04W76/19
    • Techniques for synchronization of stored service parameters are disclosed. In one aspect, a configuration identifier is transmitted (370) from a mobile station (106) to a base station (104), and compared with an identifier generated in the base station (380). If the identifiers match, the configuration is used for communication (390). In another aspect, the identifier is generated by selecting an identifier associated with a configuration from a configuration table (610). In yet another aspect, the identifier is generated by computing a cyclic redundancy check (CRC) of the configuration (320). Various other aspects are also presented. These aspects have the benefit of preventing attempted use of unsynchronized stored service parameters and associated call setup failures and subsequent renegotiation, with the net effect of reducing call setup time and more efficient use of system resources.
    • 公开了存储的服务参数的同步技术。 一方面,从移动台(106)向基站(104)发送配置标识符(370),并与基站(380)中生成的标识符进行比较。 如果标识符匹配,则配置用于通信(390)。 在另一方面,通过从配置表(610)选择与配置相关联的标识符来生成标识符。 在另一方面,通过计算配置(320)的循环冗余校验(CRC)来生成标识符。 还提出了各种其他方面。 这些方面具有防止尝试使用不同步存储的服务参数和相关联的呼叫建立失败以及随后的重新协商的优点,具有减少呼叫建立时间和更有效地利用系统资源的净效果。