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    • 3. 发明申请
    • APPARATUS AND METHOD FOR MANAGING VEHICLE SPEED
    • 用于管理车辆速度的装置和方法
    • US20090076700A1
    • 2009-03-19
    • US11855703
    • 2007-09-14
    • ASSAD RADPOUR
    • ASSAD RADPOUR
    • G06F17/00B60Q1/00
    • G08G1/096716B60W2550/22B60W2550/402G07C5/008G07C5/085G08G1/052G08G1/09675G08G1/096775
    • A system that incorporates teachings of the present disclosure may include, for example, a communication device having a controller to receive speed limit information from a remote wireless transmitter where the speed limit information comprising a speed limit and an applicable speed area, receive location information associated with a vehicle, determine a location of the vehicle based at least in part on the location information, determine a speed of the vehicle, determine an excessive speed when the speed of the vehicle exceeds the speed limit and when the location of the vehicle is within the applicable speed area, and provide a driver notification of the excessive speed according to a user profile associated with a driver of the vehicle. Other embodiments are disclosed.
    • 结合本公开的教导的系统可以包括例如具有控制器的通信设备,该控制器从远程无线发射机接收速度限制信息,其中包括速度限制和适用速度区域的速度限制信息接收相关联的位置信息 至少部分地基于位置信息来确定车辆的位置,确定车辆的速度,当车辆的速度超过限速时确定过大的速度,并且当车辆的位置在 适用的速度区域,并且根据与车辆的驾驶员相关联的用户简档来提供驾驶员的超速速度通知。 公开了其他实施例。
    • 5. 发明授权
    • Global roaming services for telecommunications systems
    • 电信系统全球漫游服务
    • US07263356B2
    • 2007-08-28
    • US11222004
    • 2005-09-08
    • Assad Radpour
    • Assad Radpour
    • H04Q7/20
    • H04B7/18506H04M3/42229H04M3/42272H04M2207/20H04W4/04H04W4/16H04W8/04H04W8/06H04W84/005
    • A system and method for extending a user's communications services to an airplane seat telephone terminal proximate the user while the user is aboard an airplane is provided. The system includes a Subscriber Interface (SI) for providing a Subscriber Identity Record (SIR) including the user's flight data and a Universal Communications Address (UCA), and a Subscriber Location Register (SLR) adapted to receive the subscriber identity record from the subscriber interface and communicate with a home location register associated with the user to provide a subscriber location in response to a telephone call placed to the user's Universal Communications Address. The Universal Communications Address can be a Mobile Station ISDN number associated with a wireless user terminal or an ISDN/PSTN number associated with a wireline telephone of said user.
    • 提供了一种用于在用户乘坐飞机时将用户的通信服务扩展到靠近用户的飞机座椅电话终端的系统和方法。 该系统包括用于提供包括用户的飞行数据和通用通信地址(UCA)的订户身份记录(SIR)的用户接口(SI)以及适于从订户接收订户身份记录的订户位置寄存器(SLR) 接口并与与用户相关联的归属位置寄存器进行通信,以响应于放置到用户的通用通信地址的电话呼叫来提供用户位置。 通用通信地址可以是与无线用户终端或与所述用户的有线电话相关联的ISDN / PSTN号码相关联的移动台ISDN号码。
    • 6. 发明授权
    • Securing communications of a wireless access point and a mobile device
    • 确保无线接入点和移动设备的通信
    • US09565558B2
    • 2017-02-07
    • US13278702
    • 2011-10-21
    • Assad Radpour
    • Assad Radpour
    • H04L29/06H04W12/04H04L9/08H04L9/32H04W84/12
    • H04W12/08H04L9/083H04L9/321H04L9/3271H04L63/166H04L2209/80H04W12/04H04W84/12
    • In one or more embodiments, a network provider can receive a request to access a public network via a wireless network implemented via one or more wireless access points. The network provider can receive, via an unsecured wireless communication from a mobile device utilizing the wireless network and via a hypertext transfer protocol secure (HTTPS), an encryption key usable to secure wireless communications from the mobile device utilizing the wireless network. The encryption key can be encrypted via a public encryption key, received from the network provider or previously stored by the mobile device, associated with the network provider. The network provider can decrypt the encryption key and can provide the encryption key to a wireless access point implementing the wireless network and communicating with the mobile device. The wireless access point and the mobile device can communicate in a secure fashion based on the encryption key.
    • 在一个或多个实施例中,网络提供商可经由经由一个或多个无线接入点实现的无线网络接收访问公共网络的请求。 网络提供商可以通过来自使用无线网络的移动设备和经由超文本传输​​协议安全(HTTPS)的移动设备的不安全的无线通信来接收可用于利用无线网络从移动设备保护无线通信的加密密钥。 可以通过与网络提供商相关联的从网络提供商接收或者由移动设备先前存储的公共加密密钥加密加密密钥。 网络提供商可以解密加密密钥,并且可以向实现无线网络并与移动设备通信的无线接入点提供加密密钥。 无线接入点和移动设备可以基于加密密钥以安全的方式进行通信。
    • 7. 发明授权
    • Traffic modeling for packet data communications system dimensioning
    • 分组数据通信系统尺寸的流量建模
    • US08619611B2
    • 2013-12-31
    • US13036677
    • 2011-02-28
    • Assad Radpour
    • Assad Radpour
    • H04L12/26
    • H04L41/147H04L41/0896H04L41/145H04L41/5003
    • A packet-based communications network is dimensioned based on a maximum number of users able to receive a predetermined target throughput of data over a predetermined number of channels. For each of an incremental number of users, at least one blocking probability is calculated, based on a traffic distribution model, and a service delay is calculated, based on the blocking probability. An iterative throughput, corresponding to each of the incremental number of users, is determined based on the corresponding blocking probability and service delay. Each iterative throughput is compared to the target throughput. The maximum number of users is identified as the number of users having a corresponding iterative throughput that is closest to and less than target throughput.
    • 基于分组的通信网络基于能够在预定数量的信道上接收预定目标吞吐量的最大数量的用户来确定尺寸。 对于每个增量数量的用户,基于流量分布模型计算至少一个阻塞概率,并且基于阻塞概率来计算服务延迟。 基于相应的阻塞概率和服务延迟确定对应于每个增量用户数量的迭代吞吐量。 将每个迭代吞吐量与目标吞吐量进行比较。 用户的最大数量被确定为具有最接近目标吞吐量的相应迭代吞吐量的用户数。
    • 8. 发明授权
    • Traffic modeling for packet data communications system dimensioning
    • 分组数据通信系统尺寸的流量建模
    • US07916655B2
    • 2011-03-29
    • US11834166
    • 2007-08-06
    • Assad Radpour
    • Assad Radpour
    • H04J3/16
    • H04L41/147H04L41/0896H04L41/145H04L41/5003
    • A packet-based communications network is dimensioned based on a maximum number of users able to receive a predetermined target throughput of data over a predetermined number of channels. For each of an incremental number of users, at least one blocking probability is calculated, based on a traffic distribution model, and a service delay is calculated, based on the blocking probability. An iterative throughput, corresponding to each of the incremental number of users, is determined based on the corresponding blocking probability and service delay. Each iterative throughput is compared to the target throughput. The maximum number of users is identified as the number of users having a corresponding iterative throughput that is closest to and less than target throughput.
    • 基于分组的通信网络基于能够在预定数量的信道上接收预定目标吞吐量的最大数量的用户来确定尺寸。 对于每个增量数量的用户,基于流量分布模型计算至少一个阻塞概率,并且基于阻塞概率来计算服务延迟。 基于相应的阻塞概率和服务延迟确定对应于每个增量用户数量的迭代吞吐量。 将每个迭代吞吐量与目标吞吐量进行比较。 用户的最大数量被确定为具有最接近目标吞吐量的相应迭代吞吐量的用户数。
    • 10. 发明申请
    • TRAFFIC MODELING FOR PACKET DATA COMMUNICATIONS SYSTEM DIMENSIONING
    • 分组数据通信系统尺寸的交通建模
    • US20080019325A1
    • 2008-01-24
    • US11834166
    • 2007-08-06
    • Assad RADPOUR
    • Assad RADPOUR
    • H04B7/216
    • H04L41/147H04L41/0896H04L41/145H04L41/5003
    • A packet-based communications network is dimensioned based on a maximum number of users able to receive a predetermined target throughput of data over a predetermined number of channels. For each of an incremental number of users, at least one blocking probability is calculated, based on a traffic distribution model, and a service delay is calculated, based on the blocking probability. An iterative throughput, corresponding to each of the incremental number of users, is determined based on the corresponding blocking probability and service delay. Each iterative throughput is compared to the target throughput. The maximum number of users is identified as the number of users having a corresponding iterative throughput that is closest to and less than target throughput.
    • 基于分组的通信网络基于能够在预定数量的信道上接收预定目标吞吐量的最大数量的用户来确定尺寸。 对于每个增量数量的用户,基于流量分布模型计算至少一个阻塞概率,并且基于阻塞概率来计算服务延迟。 基于相应的阻塞概率和服务延迟确定对应于每个增量用户数量的迭代吞吐量。 将每个迭代吞吐量与目标吞吐量进行比较。 用户的最大数量被确定为具有最接近目标吞吐量的相应迭代吞吐量的用户数。