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    • 1. 发明申请
    • LOCATION INFORMATION VALIDATION TECHNIQUES
    • 位置信息验证技术
    • US20170017921A1
    • 2017-01-19
    • US14800963
    • 2015-07-16
    • BANDWIDTH.COM, INC.
    • LARRY REEDER
    • G06Q10/08G06Q50/32
    • G06Q10/0838G06Q50/32
    • Embodiments of the present invention relate generally to methods and systems for validating location information and more particularly to validating an address associated with a communication identifier such as a telephone number which can be used, for example, to handle an emergency call placed from that telephone number. Generally speaking, embodiments of the present invention can include a validation process for location information received during registration of a subscriber of a communication service. The registration information can comprise a telephone number and an address. In one example, the received address can comprise a United States Postal Service (USPS) standard address while the validated address can comprise a Master Street Address Guide (MSAG) valid address.
    • 本发明的实施例一般涉及用于验证位置信息的方法和系统,更具体地涉及验证与诸如电话号码之类的通信标识符相关联的地址,例如可用于处理从该电话号码发出的紧急呼叫 。 一般来说,本发明的实施例可以包括在通信服务的订户的注册期间接收到的位置信息的验证过程。 注册信息可以包括电话号码和地址。 在一个示例中,接收到的地址可以包括美国邮政服务(USPS)标准地址,而验证地址可以包括主地址指南(MSAG)有效地址。
    • 2. 发明授权
    • Techniques to communicate messages utilizing a common telephone number
    • 使用公共电话号码传达消息的技术
    • US09445244B1
    • 2016-09-13
    • US15137518
    • 2016-04-25
    • Bandwidth.com, Inc.
    • Daniel TolbertGrant Forrest
    • H04Q11/00H04L12/50H04W4/08H04W4/12
    • H04W4/08H04W4/12
    • Various embodiments are generally directed to an apparatus, method and other techniques to receive a message directed towards a common telephone number, the common telephone number to enable communications between attendee devices and organizer devices. Embodiments also include techniques to determine whether the message is received from an attendee device or an organizer device based on a telephone number associated with the message and the device that sent the message. Further, in response to determining that the message is received from an attendee device, send the message to one or more organizer devices, and in response to determining that the message is received from an organizer device, send the message to all attendee devices or a specific attendee device based on information in the message.
    • 各种实施例通常涉及用于接收针对公共电话号码的消息的装置,方法和其他技术,该公共电话号码用于启用与会者设备和组织者设备之间的通信。 实施例还包括基于与消息相关联的电话号码和发送消息的设备来确定是否从参加者设备或组织者设备接收消息的技术。 此外,响应于确定从参加者设备接收到消息,将消息发送到一个或多个管理器设备,并且响应于确定从组织器设备接收到消息,将消息发送到所有与会者设备或 基于消息中的信息的特定参加者设备。
    • 5. 发明授权
    • Techniques for executing a handoff profile between telecommunications networks
    • 在电信网络之间执行切换简档的技术
    • US09191866B2
    • 2015-11-17
    • US14705243
    • 2015-05-06
    • Bandwidth.com, Inc.
    • Jesse StimpsonAdam CookKyle WhiteCharlie Surface
    • H04W4/00H04W36/00
    • H04W36/0022H04L65/1083H04W36/0011H04W36/0083H04W36/14H04W36/365
    • Examples are disclosed for executing a handoff profile for a mobile device. Communication link handoff logic may be executed by a processor to detect an 802.11 network access point and register the mobile device with a call server over the 802.11 network access point. Thereafter, a first timer may be initiated for a specified duration wherein the registration between the mobile device and the call server over the 802.11 network access point is maintained without interruption for the duration of the first timer. Upon successful expiration of the first timer, a second timer may be initiated for a specified duration wherein VoIP communication link parameters for the 802.11 link between the mobile device and the call server are deemed sufficient for the entire duration of the second timer. Upon successful expiration of the second timer, a handoff may be performed between the mobile device and the call server from the cellular communication link to the 802.11 link.
    • 公开了用于执行移动设备的切换简档的示例。 通信链路切换逻辑可以由处理器执行以检测802.11网络接入点,并通过802.11网络接入点通过呼叫服务器注册移动设备。 此后,可以在指定的持续时间内启动第一定时器,其中通过802.11网络接入点在移动设备和呼叫服务器之间的注册在第一定时器的持续时间内被保持而不中断。 在第一定时器成功结束之后,可以在指定的持续时间内启动第二定时器,其中在第二计时器的整个持续时间内,用于移动设备和呼叫服务器之间的802.11链路的VoIP通信链路参数被认为是足够的。 在第二定时器成功结束之后,可以在移动设备和呼叫服务器之间从蜂窝通信链路到802.11链路执行切换。
    • 6. 发明授权
    • Techniques for establishing a communication handoff threshold using user feedback
    • 使用用户反馈建立通信切换阈值的技术
    • US09014148B1
    • 2015-04-21
    • US14590074
    • 2015-01-06
    • Bandwidth.com, Inc.
    • Kyle WhiteAdam CookJesse StimpsonCharlie Surface
    • H04W36/30H04L29/06H04M3/22
    • H04W36/0083H04L65/40H04M3/2227H04W36/0016H04W36/0094H04W36/30H04W36/365
    • Examples are disclosed for acquiring real-time VoIP data and implementing statistical modeling techniques to perform a handoff between different telecommunication networks for a hybrid mobile device. In some examples communication link handoff logic may be executed by the processor component to receive VoIP data during a voice call mediated by a call server, the voice call between a hybrid mobile device and another communication device, the data pertaining to one or more Voice-over Internet Protocol (VoIP) communication link parameters for the communication link between the hybrid mobile device and the call server. The VoIP communication link parameters are statistically modeled and compared to a handoff profile operative to establish criteria for switching the VoIP communication link to an alternate communication link.
    • 公开了用于获取实时VoIP数据和实施统计建模技术以在混合移动设备的不同电信网络之间执行切换的示例。 在一些示例中,通信链路切换逻辑可以由处理器组件执行以在由呼叫服务器介入的语音呼叫期间接收VoIP数据,混合移动设备与另一通信设备之间的语音呼叫,属于一个或多个语音 - 互联网协议(VoIP)通信链路参数,用于混合移动设备和呼叫服务器之间的通信链路。 VoIP通信链路参数是统计建模的,并且与切换配置文件进行比较,该切换配置文件可操作以建立用于将VoIP通信链路切换到替代通信链路的标准。
    • 7. 发明授权
    • IP-based call answering point selection and routing
    • 基于IP的呼叫应答点选择和路由
    • US08830987B2
    • 2014-09-09
    • US12134355
    • 2008-06-06
    • Raymond A. VilisRichard A. Peters
    • Raymond A. VilisRichard A. Peters
    • H04L12/28H04W24/00H04M11/04H04M1/56H04L29/06H04M3/42
    • H04L65/1069H04L65/1096H04M3/42H04M2242/04H04M2242/14
    • An apparatus and a method for IP-based call answering point selection and routing. When an IP-based call is placed to an answering point such as, for example, a Public Safety Answering Point a location for the caller can not be determined using traditional DNIS and ANI based techniques. In the present invention, a geographic location (geolocation) for the caller is determined, from as IP address associated with the caller, using a database. The database comprises information obtained from a plurality of IP location sources (e.g. Skyhook Wireless Inc.'s Loki™, Federal Communications Commission (FCC) mandated WiFi™ hotspot registration data). An answering point is selected from a plurality of answering points as a function of the caller's location. The call is routed to the selected answering point and the caller's location information is provided to that answering point.
    • 一种用于基于IP的呼叫应答点选择和路由的装置和方法。 当基于IP的呼叫被放置到诸如公共安全应答点的应答点时,不能使用传统的基于DNIS和ANI的技术来确定呼叫者的位置。 在本发明中,从作为与呼叫者相关联的IP地址使用数据库确定呼叫者的地理位置(地理位置)。 数据库包括从多个IP位置源(例如Skyhook Wireless Inc.的Loki TM,联邦通信委员会(FCC)强制的WiFi TM热点注册数据)获得的信息。 根据呼叫者的位置,从多个应答点中选择一个应答点。 呼叫被路由到所选择的应答点,并且呼叫者的位置信息被提供给该应答点。
    • 9. 发明授权
    • Techniques for radio fingerprinting
    • 无线电指纹识别技术
    • US08718682B2
    • 2014-05-06
    • US14064995
    • 2013-10-28
    • Bandwidth.com, Inc.
    • L. Anders Brownworth
    • H04W24/00
    • H04W60/005G01S5/0252H04W64/00H04W88/06
    • Examples are disclosed for radio fingerprinting. In some examples radio fingerprinting logic may be operative for execution on a processor component to receive a set of radio frequency signals from multiple mobile computing devices at a first time, store identification information for the set of radio frequency signals, receive a subset of the set of radio frequency signals from one of the multiple mobile computing devices at a second time, associate identification information for the subset of radio frequency signals to the one mobile computing device, and generate a multi-point radio fingerprint for the one mobile computing device based on the subset of radio frequency signals. Other examples are described and claimed.
    • 公开了用于无线电指纹识别的实例。 在一些示例中,无线电指纹识别逻辑可用于在处理器组件上执行以在第一时间从多个移动计算设备接收一组射频信号,存储用于该组射频信号的识别信息,接收该组的子集 将多个移动计算设备中的一个移动计算设备的第二时间的射频信号关联到一个移动计算设备,并将该射频信号子集的识别信息与该移动计算设备相关联,并且基于该移动计算设备生成多点无线电指纹 射频信号的子集。 其他的例子被描述和要求保护。
    • 10. 发明授权
    • Systems and methods for reestablishing a call in a telecommunications network
    • 在电信网络中重新建立呼叫的系统和方法
    • US08634531B2
    • 2014-01-21
    • US13928621
    • 2013-06-27
    • Bandwidth.com Inc.
    • David MorkenTimothy R. MissnerL. Anders Brownworth
    • H04M3/42
    • H04L29/06176H04M3/42195H04M3/428
    • A call server includes a network interface for connecting the call server to a packet-based network within a telecommunications network. The call server establishes a first connection with a calling party terminal and a second connection with a called party terminal via the packet-based network. The call server then joins the first connection with the second connection to establish communication between the calling party terminal and the called party terminal. The call server may park the second connection when the first connection is terminated or vice-versa and establish a new connection with the calling party terminal via the packet-based network if the first connection was terminated or vice versa. The call server may join the new connection with the first or second connection to reestablish communication between the calling party terminal and the called party terminal.
    • 呼叫服务器包括用于将呼叫服务器连接到电信网络内的基于分组的网络的网络接口。 呼叫服务器通过基于分组的网络建立与呼叫方终端的第一连接和与被叫方终端的第二连接。 然后,呼叫服务器将第一连接与第二连接相连,以建立主叫方终端与被叫方终端之间的通信。 当第一连接终止时,呼叫服务器可以驻留第二连接,反之亦然,并且如果第一连接终止则与主叫方终端建立新的连接,或者反之亦然。 呼叫服务器可以加入与第一或第二连接的新连接以重新建立主叫方终端和被叫方终端之间的通信。