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    • 2. 发明授权
    • Automating emergency calls globally
    • 全球自动化紧急呼叫
    • US08249549B1
    • 2012-08-21
    • US12889093
    • 2010-09-23
    • Iftekhar RahmanKika Konstantinou
    • Iftekhar RahmanKika Konstantinou
    • H04W88/02
    • H04M1/72536H04M3/42059H04M3/42306H04M3/5116H04M2201/38H04M2207/18H04W4/90H04W76/50
    • Automating emergency calls globally involves receiving, from a user and at a mobile device, a number associated with an outgoing call; identifying, at the mobile device, the received number is a first emergency number; and identifying, at the mobile device, a country associated with the first emergency number. The mobile device also identifies a country of operation of the mobile device at a time of receiving the first emergency number. The device then determines whether the country of operation corresponds to the country associated with the first emergency number. Upon determining that the country of operation does not correspond to the country associated with the first emergency number, a second emergency number associated with the country of operation is determined. The mobile device transmits the second emergency number to a wireless network servicing the mobile device, instead of the first emergency number, to initiate the emergency call.
    • 全局自动化紧急呼叫涉及从用户和移动设备接收与呼出呼叫相关联的号码; 在移动设备处识别所接收的号码是第一紧急号码; 以及在所述移动设备处识别与所述第一紧急号码相关联的国家。 移动设备还在接收到第一紧急号码时识别移动设备的操作国家。 然后,设备确定操作国家是否对应于与第一紧急号码相关联的国家。 在确定操作国不对应于与第一紧急号码相关联的国家时,确定与操作国家相关联的第二紧急号码。 移动设备将第二紧急号码发送到服务于移动设备的无线网络,而不是第一紧急号码,以发起紧急呼叫。
    • 4. 发明授权
    • Position determination for emergency call from multi-mode mobile station
    • 多模移动台紧急呼叫的位置确定
    • US08472917B1
    • 2013-06-25
    • US12973575
    • 2010-12-20
    • Iftekhar RahmanMingxing Li
    • Iftekhar RahmanMingxing Li
    • H04M11/04
    • H04M11/04G08B25/016
    • In the examples, at the start of an emergency call, a mobile station determines one or more types of wireless access technologies available from the mobile communication network, from among wireless access technologies supported by the mobile station. Based on a hierarchy regarding ability to determine location of the mobile station using each of the supported wireless access technologies, the mobile station selects an available wireless access technology of the mobile communication network offering the best ability to determine location of the mobile station and initiates a determination of the location of the mobile station for purposes of the emergency call via the mobile communication network using the selected wireless access technology.
    • 在这些示例中,在紧急呼叫开始时,移动台从移动台支持的无线接入技术中,确定从移动通信网络可以获得的一种或多种类型的无线接入技术。 基于关于使用所支持的无线接入技术中的每一个来确定移动站的位置的能力的层次,移动站选择移动通信网络的可用无线接入技术,其提供确定移动台的位置的最佳能力并发起 使用所选择的无线接入技术,通过移动通信网络确定用于紧急呼叫目的的移动台的位置。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR EVALUATING ACCURACY OF AN AUTOMATIC LOCATION IDENTIFICATION SYSTEM
    • 用于评估自动位置识别系统精度的系统和方法
    • US20090047925A1
    • 2009-02-19
    • US11944030
    • 2007-11-21
    • Iftekhar Rahman
    • Iftekhar Rahman
    • H04M11/04H04W4/02H04W24/00
    • H04W24/06H04W4/02H04W4/90H04W76/50
    • A method (38) and system (56) evaluate the accuracy of an Automatic Location Identification (ALI) system (36) deployed within an environment (20) and configured to location a wireless communication device (24) originating an emergency call (22) through a wireless communication network (26). The method (38) includes a subprocesses that identify a validation region (144) in which a service area (106) of a public service answering point (PSAP) (32) and an RF coverage area (129) overlap, classify sub-regions within the validation region (144) according to a predetermined set of test scenarios (148) representing unique calling environments, and select test points (200) within the validation region (144) from which test calls, that simulate emergency calls, will be performed. The method (38) further includes an empirical test call execution subprocess (50) for performing test calls within the validation region (144) and a predictive test call execution subprocess (52) for simulating test calls within a simulated environment (260).
    • 方法(38)和系统(56)评估部署在环境(20)内的自动位置识别(ALI)系统(36)的准确性,并且被配置为定位发起紧急呼叫(22)的无线通信设备(24) 通过无线通信网络(26)。 方法(38)包括识别公共服务应答点(PSAP)(32)的服务区域(106)和RF覆盖区域(129)重叠的验证区域(144)的子过程,对子区域 根据表示唯一呼叫环境的预定的一组测试场景(148)在验证区域(144)内,以及在验证区域(144)内选择将执行模拟紧急呼叫的测试呼叫的测试点(200) 。 方法(38)还包括用于在验证区域(144)内执行测试呼叫的经验测试呼叫执行子过程(50)和用于模拟模拟环境(260)内的测试呼叫的预测测试呼叫执行子过程(52)。
    • 8. 发明授权
    • Plus code dialing in a mobile device
    • 加上移动设备中的代码拨号
    • US08170551B2
    • 2012-05-01
    • US12410361
    • 2009-03-24
    • Iftekhar RahmanGordana GuranovicEric Wu
    • Iftekhar RahmanGordana GuranovicEric Wu
    • H04W4/00H04M3/00
    • H04Q3/0025H04M1/312H04W76/10
    • A mobile device include processes that allow the mobile device to make international calls using network-based plus code dialing even when the current network does not inherently support network-based plus code dialing. The mobile device obtains, via a set-up process, state information describing whether the network supports network-based plus code dialing. The mobile device transmits, in response to a request from a user and when the state information indicates the network supports network-based plus code dialing, a message to the network to initiate the international call based on a network-based plus code dialing scheme. The mobile device transmits, in response to the request from the user and when the state information indicates the network does not support network-based plus code dialing, a message to the network to initiate the international call using a handset-based plus code dialing scheme.
    • 移动设备包括允许移动设备使用基于网络的加码拨号进行国际呼叫的过程,即使当前网络本身不支持基于网络的加码拨号。 移动设备经由建立过程获得描述网络是否支持基于网络的加码拨号的状态信息。 移动装置响应于来自用户的请求,并且当状态信息指示网络支持基于网络的加码拨号时,基于基于网络的加码拨号方案向网络发送消息以发起国际呼叫。 移动设备响应于来自用户的请求,并且当状态信息指示网络不支持基于网络的加码拨号时,发送使用基于手机的加码拨号方案向网络发起国际呼叫的消息 。
    • 9. 发明申请
    • SYSTEMS AND METHODS FOR SHARED SECRET DATA GENERATION
    • 共享秘密数据生成的系统和方法
    • US20110022834A1
    • 2011-01-27
    • US12506675
    • 2009-07-21
    • Iftekhar RahmanChristopher M. Schmidt
    • Iftekhar RahmanChristopher M. Schmidt
    • G06F21/00H04L9/32
    • H04W12/04
    • Disclosed examples of secure communications involve generating, by a mobile communication network device, a shared secret data having a length of M units. A first operation on groups of one of N units of a randomly generated base shared secret data and one of a plurality of secret values thereby generates a plurality of first operation results. A second operation on a select plurality of the first operation results generates a plurality of second operation results. The randomly generated base shared secret data can have a length of N units, where N is less than M. The shared secret data is constructed from at least one of the first operation results and the plurality of second operation results.
    • 公开的安全通信的示例涉及由移动通信网络设备生成具有M个单元长度的共享秘密数据。 随机生成的基本共享秘密数据的N个单元之一的组和多个秘密值中的一个的组的第一操作因此产生多个第一操作结果。 对选择的多个第一操作结果的第二操作产生多个第二操作结果。 随机生成的基本共享秘密数据可以具有N个单位的长度,其中N小于M.共享秘密数据由第一操作结果和多个第二操作结果中的至少一个构成。