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    • 1. 发明授权
    • Methods of requesting volunteers for handoff in a cellular system
    • 请求志愿者在蜂窝系统中切换的方法
    • US5790954A
    • 1998-08-04
    • US452758
    • 1995-05-30
    • Daniel Richard TayloeVictor Hawes Cutler, Jr.Gerald Joseph Davieau
    • Daniel Richard TayloeVictor Hawes Cutler, Jr.Gerald Joseph Davieau
    • H04B7/15H04B7/185H04W16/04H04Q7/20B04B7/185
    • H04W16/04H04B7/18541
    • A cellular communication system (10) requests from subscriber units (30) to volunteer for handoff when a call resource shortage is about to occur. The subscriber units (30) may volunteer to handoff to another cell (24) depending on whether any adjacent or neighbor cell (24) provides adequate signal strength for servicing the on-going call. If there is another adjacent or neighbor cell (24) which provides adequate signal strength, the subscriber unit (30) can volunteer for handoff to the other cell. The cellular communication system (10) may accept the volunteer handoff request, whereby the subscriber unit (30) volunteering for handoff is handed-off to the other cell (24). However, the cellular communication system (10) may deny the handoff request. If the handoff request is denied, the subscriber unit (30) may have to drop the call or try to locate another cell to handoff its call before a predetermined amount of time expires.
    • 当呼叫资源不足即将发生时,蜂窝通信系统(10)从用户单元(30)请求自愿切换。 取决于任何相邻小区(24)是否提供足够的信号强度来维持正在进行的呼叫,订户单元(30)可以自愿地切换到另一小区(24)。 如果存在提供足够的信号强度的另一相邻小区(24),则用户单元(30)可以自愿地切换到另一小区。 蜂窝通信系统(10)可以接受志愿者切换请求,由此自愿切换的用户单元(30)被切换到另一小区(24)。 然而,蜂窝通信系统(10)可以拒绝切换请求。 如果越区切换请求被拒绝,则在预定时间期满之前,用户单元(30)可能必须丢弃呼叫或尝试定位另一个小区来切换其呼叫。
    • 4. 发明授权
    • Method and apparatus for receiving ring alert and paging data in an
interference environment
    • 用于在干扰环境中接收环报警和寻呼数据的方法和装置
    • US5790951A
    • 1998-08-04
    • US707163
    • 1996-09-03
    • Daniel Richard TayloeNathan West MillerRobert Thomas Frederick
    • Daniel Richard TayloeNathan West MillerRobert Thomas Frederick
    • H04B7/185H04Q7/38
    • H04B7/18532
    • A communication system (100) includes satellites (102,104) and a mobile exchange unit (MXU) (120) for exchanging communication information with users. A satellite (102) generates synchronous timing frames requiring users operating through an MXU (120) to anticipate timing and frequency requirements to participate in communications. An MXU (120) must advance transmissions to a satellite (102) to insure transmissions arrive at satellite (102) within the proper synchronous receive window. Such advanced transmissions by MXU (120) interfere with reception of a ring alert/page transmission (130) which contains the location of broadcast channels (86) designating an incoming call or page data transmissions. The MXU (120) alternatively extracts a broadcast channel location from a candidate hand-off list being transmitted by a satellite (102) to in-use transceivers (310). The MXU 120 then distributes the location of the broadcast channel to those transceivers (310) presently not in-use.
    • 通信系统(100)包括用于与用户交换通信信息的卫星(102,104)和移动交换单元(MXU)(120)。 卫星(102)产生需要用户通过MXU(120)进行操作的同步定时帧,以预测参与通信的定时和频率要求。 MXU(120)必须将传输提前到卫星(102),以确保传输到达适当的同步接收窗口内的卫星(102)。 MXU(120)的这种高级传输干扰包含指定呼入或寻呼数据传输的广​​播信道(86)的位置的环形警报/页面传输(130)的接收。 MXU(120)可替代地从由卫星(102)发送到使用中收发器(310)的候选切换列表中提取广播频道位置。 然后,MXU 120将广播频道的位置分配给当前未使用的收发器(310)。
    • 8. 发明授权
    • Dial-back call completion method and apparatus in a radio-communication
system
    • 无线电通信系统中的拨号呼叫完成方法和装置
    • US5689803A
    • 1997-11-18
    • US519220
    • 1995-08-25
    • Daniel Richard Tayloe
    • Daniel Richard Tayloe
    • H04B7/185H04B7/26H04Q7/38
    • H04B7/18558
    • A method and apparatus for making a call connection in a communication system (10) having multiple communication units (26) (CU), and at least one communication antenna (12) that moves with respect to the CUs (26). The method involves determining (154) whether a call attempt from a source CU (26) to a target CU (50) is successful. When the call attempt is not successful, a control facility (24) predicts (xxx) when one of the antenna (12) will move within an optimal call initiation area (124), within which there is an increased likelihood of establishing a communication link with the target CU (50). At the time when the antenna (12) will move within the optimal call initiation area (124), the system attempts to contact the target CU (50) and, if successful, informs the target CU (50) to wait while the system calls the source CU (26) and connects the call.
    • 一种用于在具有多个通信单元(CU)的通信系统(10)中进行呼叫连接的方法和装置,以及至少一个相对于所述CU(26)移动的通信天线(12)。 该方法包括确定(154)来自源CU(26)到目标CU(50)的呼叫尝试是否成功。 当呼叫尝试不成功时,当天线(12)中的一个将在最佳呼叫发起区域(124)内移动时,控制设备(24)预测(xxx),其中建立通信链路的可能性增加 与目标CU(50)。 当天线(12)在最佳呼叫发起区域(124)内移动时,系统尝试接触目标CU(50),并且如果成功则通知目标CU(50)在系统调用 源CU(26)并连接呼叫。
    • 9. 发明授权
    • Communication system which predicts good opportunities for communication
    • 通信系统预测良好的沟通机会
    • US5678174A
    • 1997-10-14
    • US427390
    • 1995-04-24
    • Daniel Richard Tayloe
    • Daniel Richard Tayloe
    • H04B7/185
    • G01S5/08H04B7/18539
    • A communication network (10) includes a number of satellites (12) traveling in low earth orbits (14). The satellites (12) broadcast data which identify particular cells (34) within which communication may take place and geographic locations for the cells (34). A radio unit (26) located near the earth's surface receives these broadcast data and calculates a satellite position relative to the radio unit (26). Based upon this position, the radio unit (26) predicts when target satellites (12) will reach their maximum elevation angles relative to the radio unit (26) and the future times at which these maximum elevation angles will be reached. These predictions are then presented to a user of the radio unit (26).
    • 通信网络(10)包括在低地球轨道(14)中行进的多个卫星(12)。 卫星(12)广播识别特定小区(34)的数据,其中可以进行通信,并且为小区(34)发送地理位置。 位于地球表面附近的无线电单元(26)接收这些广播数据并计算相对于无线电单元(26)的卫星位置。 基于该位置,无线电单元(26)预测何时目标卫星(12)将相对于无线电单元(26)达到其最大仰角以及将达到这些最大仰角的未来时间。 然后将这些预测呈现给无线电单元(26)的用户。
    • 10. 发明授权
    • ATM switching system and method with propagation delay compensation
    • ATM交换系统和传播延迟补偿方法
    • US06301269B1
    • 2001-10-09
    • US09081746
    • 1998-05-20
    • Daniel Richard TayloePeter Joseph ArmbrusterKajana Aswath Rao
    • Daniel Richard TayloePeter Joseph ArmbrusterKajana Aswath Rao
    • H04J306
    • H04Q11/0478H04L12/5601H04L49/106H04L49/405H04L2012/5649H04L2012/5651H04L2012/5652H04L2012/5674H04L2012/5681
    • A switch system (20) switches at least sixty-four asynchronous transfer mode (ATM) input data streams (22) into at least sixty-four ATM output data streams (24). The switch system (20) includes a backplane assembly (38) having integral data transmission lines, integral clock transmission lines, and discrete slots (36). A single stage space switch circuit card (26), a clock circuit card (28), and input circuit cards (30) are connected to separate slots (36) in the backplane assembly (38). The integral data transmission lines are coupled between the input circuit cards (30) and the switch circuit card (26) and the integral clock transmission lines are coupled between the clock circuit card (28) and the input circuit cards (30). Data path lengths for the integral data transmission lines differ in the backplane assembly (38), and clock path lengths for the clock transmission lines differ in the backplane assembly. A timing compensation element (86) on each of the input circuit cards (30) imparts a time delay to one of the ATM input data streams (22) to compensate for data and clock path length differences so the each of the ATM input data streams (22) arrive at the single stage switch (26) substantially synchronously.
    • 交换机系统(20)将至少64个异步传输模式(ATM)输入数据流(22)切换成至少64个ATM输出数据流(24)。 开关系统(20)包括具有整体数据传输线,集成时钟传输线和分立时隙(36)的背板组件(38)。 单级空间开关电路卡(26),时钟电路卡(28)和输入电路卡(30)连接到背板组件(38)中的分开的槽(36)。 整体数据传输线耦合在输入电路卡(30)和开关电路卡(26)之间,整体时钟传输线耦合在时钟电路卡(28)和输入电路卡(30)之间。 集成数据传输线的数据路径长度在背板组件(38)中不同,时钟传输线的时钟路径长度在背板组件中不同。 每个输入电路卡(30)上的定时补偿元件(86)向一个ATM输入数据流(22)施加时间延迟,以补偿数据和时钟路径长度差异,因此每个ATM输入数据流 (22)基本同步到达单级开关(26)。