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    • 1. 发明授权
    • Avoiding transmitter collision sessions in femtocells arrays
    • 避免毫微微小区阵列中的发射机碰撞会话
    • US08626186B2
    • 2014-01-07
    • US13057690
    • 2008-08-06
    • Rafy CarmonAlan CarterAmi AppelBenny ArvivAlon ShechterStephen Whitakker
    • Rafy CarmonAlan CarterAmi AppelBenny ArvivAlon ShechterStephen Whitakker
    • H04W24/00H04W4/00H04M1/00
    • H04W56/00H04W16/10H04W72/082H04W84/045
    • Control unit within a femtocell base station is arranged to detect a transmission collision situation and resolves it by adjusting the timing of the transmission signal and consequently the frame position gradually over time. The adjustment (or shift) is performed in a slow enough rate such that the User Equipments currently connected (camped) to the femtocell base station remain connected. Additionally, a method is also provided. The method comprises: detecting neighboring base stations; detecting frame boundaries of the transmitting signal of each detected neighboring base station; calculating optimal transmit position; setting transmit position to calculated optimal transmit position; and maintaining optimal transmit position by gradually adjusting transmit position over time. In case, detecting neighboring base stations is not possible, the method comprises: detecting absolute time drifting in view of an absolute accurate time reference and maintaining constant absolute transmit position by gradually adjusting transmit position over time.
    • 毫微微小区基站内的控制单元被配置为检测传输冲突情况,并且通过随时间逐渐调整传输信号的定时和随之而来的帧位置来解决它。 以足够慢的速率执行调整(或移位),使得当前连接(驻留)到毫微微小区基站的用户设备保持连接。 此外,还提供了一种方法。 该方法包括:检测相邻基站; 检测每个检测到的相邻基站的发送信号的帧边界; 计算最优发射位置; 将发射位置设置为计算的最佳发射位置; 并通过逐渐调整发射位置来保持最佳发射位置。 在不可能检测相邻基站的情况下,该方法包括:通过绝对准确的时间参考来检测绝对时间漂移,并通过逐渐调整发射位置随时间而保持恒定的绝对发送位置。
    • 2. 发明授权
    • Femtocell handset assisted clock correction
    • 毫微微蜂窝手机辅助时钟校正
    • US08306527B2
    • 2012-11-06
    • US12765197
    • 2010-04-22
    • Rafy CarmonYoav VollochAmir AppelSharon Levy
    • Rafy CarmonYoav VollochAmir AppelSharon Levy
    • H04W24/00
    • H04W56/0035H04W24/00H04W28/18H04W84/045H04W88/02H04W92/10
    • A method of improving frequency accuracy of a clock unit adapted to clock a femtocell local cellular communication home base station is provided. The method comprising: providing a local cellular communication home base station having an oscillator adapted to operate as a clock therein, wherein at least one cellular communication device is camped thereto, and wherein the at least one camped cellular communication device is further in communication with at least one neighboring cellular communication base station which is associated with an oscillator adapted to operate as a clock therein; periodically applying a derivative operator over periodically obtained local communication parameters and periodically obtained neighboring communication parameters thereby generating derivative communication parameters over time; and correcting the accuracy of the frequency of the clock in the femtocell local cellular communication home base station using the derivative communication parameters over time.
    • 提供了一种提高适用于对毫微微小区本地蜂窝通信家庭基站进行时钟的时钟单元的频率精度的方法。 该方法包括:提供具有适于在其中作为时钟操作的振荡器的本地蜂窝通信家庭基站,其中至少一个蜂窝通信设备驻留在其上,并且其中所述至少一个营地蜂窝通信设备进一步与 至少一个相邻的蜂窝通信基站,其与适于在其中作为时钟操作的振荡器相关联; 周期性地对周期性获得的本地通信参数应用导数运算符,并周期性地获得相邻通信参数,从而随着时间的推移生成导数通信参数; 以及使用随着时间的推导通信参数来校正毫微微小区本地蜂窝通信家庭基站中的时钟的频率的精度。
    • 3. 发明申请
    • FEMTOCELL HANDSET ASSISTED CLOCK CORRECTION
    • FEMTOCELL HANDSET辅助时钟校正
    • US20100273474A1
    • 2010-10-28
    • US12765197
    • 2010-04-22
    • Rafy CARMONYoav VOLLOCHAmir APPELSharon LEVY
    • Rafy CARMONYoav VOLLOCHAmir APPELSharon LEVY
    • H04W24/02
    • H04W56/0035H04W24/00H04W28/18H04W84/045H04W88/02H04W92/10
    • A method of improving frequency accuracy of a clock unit adapted to clock a femtocell local cellular communication home base station is provided. The method comprising: providing a local cellular communication home base station having an oscillator adapted to operate as a clock therein, wherein at least one cellular communication device is camped thereto, and wherein the at least one camped cellular communication device is further in communication with at least one neighboring cellular communication base station which is associated with an oscillator adapted to operate as a clock therein; periodically applying a derivative operator over periodically obtained local communication parameters and periodically obtained neighboring communication parameters thereby generating derivative communication parameters over time; and correcting the accuracy of the frequency of the clock in the femtocell local cellular communication home base station using the derivative communication parameters over time.
    • 提供了一种提高适用于对毫微微小区本地蜂窝通信家庭基站进行时钟的时钟单元的频率精度的方法。 该方法包括:提供具有适于在其中作为时钟操作的振荡器的本地蜂窝通信家庭基站,其中至少一个蜂窝通信设备驻留在其上,并且其中所述至少一个营地蜂窝通信设备进一步与 至少一个相邻的蜂窝通信基站,其与适于在其中作为时钟操作的振荡器相关联; 周期性地对周期性获得的本地通信参数应用导数运算符,并周期性地获得相邻通信参数,从而随着时间的推移生成导数通信参数; 以及使用随着时间的推导通信参数来校正毫微微小区本地蜂窝通信家庭基站中的时钟的频率的精度。
    • 4. 发明授权
    • Scalable digital base band processor for cellular base stations
    • 用于蜂窝基站的可扩展数字基带处理器
    • US08694056B2
    • 2014-04-08
    • US12263492
    • 2008-11-02
    • Rafy CarmonAmir Appel
    • Rafy CarmonAmir Appel
    • H04M1/00H04B1/38
    • H04L41/00H04L41/0833H04W88/08
    • An array of base band processors cooperating for sharing processing power in managing and controlling user equipment traffic in a small cellular communication base station (Femtocell). The base band processors array comprises: a master base band processor; and a plurality of slave base band processors, wherein each base band processor comprise a processing unit, a first layer engine, and communication, control and interface modules providing scalability support functionality, and wherein the processing unit and the first layer engine are arranged in cooperation to manage and control user equipment traffic in the cellular communication base station, and wherein the scalability support functionality is arranged to enable coherent and aligned cooperation between the master base band processor and the plurality of slave base band processors connected thereto. Advantageously the array of base band processors may achieve tight control over base station power consumption, increased range and adjustable number of supported users.
    • 一组基带处理器,用于共享用于管理和控制小蜂窝通信基站(Femtocell)中的用户设备业务的处理能力。 基带处理器阵列包括:主基带处理器; 以及多个从属基带处理器,其中每个基带处理器包括处理单元,第一层引擎以及提供可扩展性支持功能的通信,控制和接口模块,并且其中处理单元和第一层引擎被配置成合作 以管理和控制蜂窝通信基站中的用户设备业务,并且其中所述可扩展性支持功能被布置成使得主基带处理器与与其连接的多个从基带处理器之间能够进行一致和对准的协作。 有利的是,基带处理器阵列可以实现对基站功耗的紧密控制,增加的范围和可支持的用户数量。
    • 5. 发明申请
    • Generating A Random Number In An Existing System On Chip
    • 在现有系统中生成随机数
    • US20110060935A1
    • 2011-03-10
    • US12876304
    • 2010-09-07
    • Guy RegevYehoshua MannAvi DanielRafy CarmonRam Sokolov
    • Guy RegevYehoshua MannAvi DanielRafy CarmonRam Sokolov
    • G06F1/00G06F7/58
    • G06F7/588
    • A system for generating a true random number and implemented within an existing System on Chip (SoC) is provided herein. The system includes one or more sub circuitry synchronous modules configured to operate in a specified nominal clock rate, wherein each sub circuitry synchronous modules yields expected deterministic results when operating in its nominal clock rate; and a control module configured to clock the one or more sub circuitry synchronous modules each in a clock rate higher than its respective the nominal clock rate and beyond a specified value, to yield a non deterministic behavior of the one or more sub circuitry synchronous modules, resulting in one or more random signals, wherein the system is implemented within an existing system on chip (SOC).
    • 本文提供了一种用于生成真实随机数并在现有片上系统(SoC)中实现的系统。 该系统包括配置成以指定的标称时钟速率工作的一个或多个子电路同步模块,其中每个子电路同步模块在其标称时钟速率下工作时产生预期的确定性结果; 以及控制模块,被配置为以高于其相应的标称时钟速率并超过规定值的时钟速率对所述一个或多个子电路同步模块进行时钟,以产生所述一个或多个子电路同步模块的非确定性行为, 导致一个或多个随机信号,其中系统在现有的片上系统(SOC)内实现。
    • 9. 发明授权
    • Establishing colocated second cell using a second scrambling code by a femto base station
    • 使用毫微微基站的第二扰码建立共同定位的第二小区
    • US08559345B2
    • 2013-10-15
    • US13056278
    • 2009-07-23
    • Rafy CarmonAmir AppelStephen WhittakerAlan Carter
    • Rafy CarmonAmir AppelStephen WhittakerAlan Carter
    • H04B7/00
    • H04W24/02H04W84/045
    • In a cellular communications network, it may be desirable for a large number of basestations to share one or a small number of scrambling codes. When a basestation identifies a desired scrambling code, which is also being used by another nearby basestation, steps are taken such that a location area update is triggered whenever a mobile communications device moves from a coverage area of the nearby basestation into a coverage area of said basestation. Further, the basestation establishes a first cell, using the desired scrambling code, and also establishes a second cell also served by the basestation, using a second scrambling code. By ensuring that mobile devices are preferentially served by the second cell, the possibility of interference with the nearby basestation is reduced.
    • 在蜂窝通信网络中,可能需要大量的基站来共享一个或少量的扰码。 当基站识别出正在被另一附近基站使用的所需扰码时,采取步骤,使得当移动通信设备从附近基站的覆盖区域移动到所述邻近基站的覆盖区域时,触发位置区域更新 基站。 此外,基站使用期望的扰码建立第一小区,并且还使用第二扰码建立也由基站服务的第二小区。 通过确保移动设备优先由第二小区服务,减少了对附近基站的干扰的可能性。
    • 10. 发明授权
    • Generating a random number in an existing system on chip
    • 在现有的片上系统中生成随机数
    • US08522065B2
    • 2013-08-27
    • US12876304
    • 2010-09-07
    • Guy RegevYehoshua MannAvi DanielRafy CarmonRam Sokolov
    • Guy RegevYehoshua MannAvi DanielRafy CarmonRam Sokolov
    • G06F1/00G06F7/58
    • G06F7/588
    • A system for generating a true random number and implemented within an existing System on Chip (SoC) is provided herein. The system includes one or more sub circuitry synchronous modules configured to operate in a specified nominal clock rate, wherein each sub circuitry synchronous modules yields expected deterministic results when operating in its nominal clock rate; and a control module configured to clock the one or more sub circuitry synchronous modules each in a clock rate higher than its respective the nominal clock rate and beyond a specified value, to yield a non deterministic behavior of the one or more sub circuitry synchronous modules, resulting in one or more random signals, wherein the system is implemented within an existing system on chip (SOC).
    • 本文提供了一种用于生成真实随机数并在现有片上系统(SoC)中实现的系统。 该系统包括配置成以指定的标称时钟速率工作的一个或多个子电路同步模块,其中每个子电路同步模块在其标称时钟速率下工作时产生预期的确定性结果; 以及控制模块,被配置为以高于其相应的标称时钟速率并超过规定值的时钟速率对所述一个或多个子电路同步模块进行时钟,以产生所述一个或多个子电路同步模块的非确定性行为, 导致一个或多个随机信号,其中系统在现有的片上系统(SOC)内实现。