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    • 1. 发明授权
    • Intelligent scheduling in a time division duplexing system to mitigate near/far interference scenarios
    • 智能调度在时分双工系统中,以减轻近/远的干扰情况
    • US08077694B2
    • 2011-12-13
    • US11563701
    • 2006-11-28
    • William K. DossAlan P. Rottinghaus
    • William K. DossAlan P. Rottinghaus
    • H04B7/212
    • H04W72/1226
    • A wireless communication system (100), method, and site controller (112) schedule at least one of transmission and reception of wireless data by at least one wireless communication device. A distance is determined between at least one wireless communication device (104) and a base station (108) in a wireless communication cell (402). At least one of a downlink subframe (610) and an uplink subframe (614) of a time division duplexing frame (602) is segmented into a plurality of segments. The at least one wireless communication device (104) is scheduled into at least one of the plurality of segments of the downlink subframe (610) and the uplink subframe (614) based on the distance determined between the at least one wireless communication device (104) and the base station (108).
    • 无线通信系统(100),方法和站点控制器(112)通过至少一个无线通信设备调度无线数据的发送和接收中的至少一个。 在无线通信小区(402)中的至少一个无线通信设备(104)和基站(108)之间确定距离。 时分双工帧(602)的下行链路子帧(610)和上行链路子帧(614)中的至少一个被分割成多个段。 基于在至少一个无线通信设备(104)之间确定的距离,至少一个无线通信设备(104)被调度到下行链路子帧(610)和上行链路子帧(614)的多个段中的至少一个中 )和基站(108)。
    • 2. 发明申请
    • INTELLIGENT SCHEDULING IN A TIME DIVISION DUPLEXING SYSTEM TO MITIGATE NEAR/FAR INTERFERENCE SCENARIOS
    • 智能调度在时间分割双工系统中,以减轻近距离/干扰情景
    • US20080123569A1
    • 2008-05-29
    • US11563701
    • 2006-11-28
    • William K. DossAlan P. Rottinghaus
    • William K. DossAlan P. Rottinghaus
    • H04J3/00
    • H04W72/1226
    • A wireless communication system (100), method, and site controller (112) schedule at least one of transmission and reception of wireless data by at least one wireless communication device. A distance is determined between at least one wireless communication device (104) and a base station (108) in a wireless communication cell (402). At least one of a downlink subframe (610) and an uplink subframe (614) of a time division duplexing frame (602) is segmented into a plurality of segments. The at least one wireless communication device (104) is scheduled into at least one of the plurality of segments of the downlink subframe (610) and the uplink subframe (614) based on the distance determined between the at least one wireless communication device (104) and the base station (108).
    • 无线通信系统(100),方法和站点控制器(112)通过至少一个无线通信设备调度无线数据的发送和接收中的至少一个。 在无线通信小区(402)中的至少一个无线通信设备(104)和基站(108)之间确定距离。 时分双工帧(602)的下行链路子帧(610)和上行链路子帧(614)中的至少一个被分割成多个段。 基于在至少一个无线通信设备(104)之间确定的距离,至少一个无线通信设备(104)被调度到下行链路子帧(610)和上行链路子帧(614)的多个段中的至少一个中 )和基站(108)。
    • 5. 发明授权
    • Method and apparatus for reducing the likelihood of contention and
resource misallocation in a packet transmission system
    • 用于降低分组传输系统中竞争和资源错位的可能性的方法和装置
    • US5493569A
    • 1996-02-20
    • US394939
    • 1995-02-27
    • Dale R. BuchholzWilliam K. DossKaren E. RobbinsR. Lee Hamilton, Jr.
    • Dale R. BuchholzWilliam K. DossKaren E. RobbinsR. Lee Hamilton, Jr.
    • H04J3/16H04L12/28
    • H04W72/0406H04J3/1694H04L1/188H04L1/1854H04L1/1877H04W72/0413H04W72/042H04W74/08
    • A packet transmission system (100) for reducing request traffic contention and the likelihood of resource misallocation includes a communications controller (110) and a plurality of remote requesting units (112) requesting packet transmission services. In response to receipt of a request (302), the controller (110) transmits a grant (306) to a requesting unit (112) when packet transmission resources (304 & 310) are available or a request acknowledgment (306) when packet transmission resources (304 & 310) are unavailable. Each remote unit (112) comprise apparatus structure and method steps for transmitting requests (302) to the controller (110) and starting a first timer having an interval (T) determined as a function of a number (Q) of outstanding requests (302). Upon receipt of an acknowledgement (306), the remote unit (112) starts a second timer having an interval (T.sub.1) longer than the interval (T). Upon expiration of either the first timer or the second timer, the remote unit (112) will then and only then transmit a duplicate request (302). By limiting the number of duplicate requests transmitted by a remote unit (112), the present invention operates to reduce request traffic contention and the likelihood of resource misallocation.
    • 用于减少请求业务争用和资源错位的可能性的分组传输系统(100)包括:请求分组传输服务的通信控制器(110)和多个远程请求单元(112)。 响应于接收到请求(302),当分组传输资源(304和310)可用时,控制器(110)向请求单元(112)发送许可(306),或者当分组传输 资源(304和310)不可用。 每个远程单元(112)包括用于向控制器(110)发送请求(302)并启动具有根据未完成请求的数量(Q)确定的间隔(T)的第一定时器的装置结构和方法步骤(302) )。 在接收到确认(306)时,远程单元(112)启动具有比间隔(T)更长的间隔(T1)的第二定时器。 当第一定时器或第二定时器到期时,远程单元(112)然后将仅发送重复请求(302)。 通过限制由远程单元(112)发送的重复请求的数量,本发明操作以减少请求流量争用和资源错位的可能性。
    • 7. 发明授权
    • Method for delivering broadcast packets in a frequency hopping local
area network
    • 在跳频局域网中传送广播数据包的方法
    • US5583866A
    • 1996-12-10
    • US349755
    • 1994-12-05
    • Frederick W. VookWilliam K. DossMark G. Demange
    • Frederick W. VookWilliam K. DossMark G. Demange
    • H04L12/18H04L12/28H04B7/212
    • H04L12/1877H04W68/025H04L12/189H04W52/0229H04W72/005
    • A method used in a communication system (10) having central controllers (14) in communication with a plurality of user devices (12) where synchronizing data (34) and user data (35) are transmitted for a predetermined period of time defining a dwell (30). The method for delivering data to more than one user device (12) simultaneously includes the steps of providing an indicator (34) associated with at least a portion of a dwell indicating that the transmission of user data (35) is directed towards more than one user device (12), and informing the user devices of the repetition rate at which the indicator is transmitted. The user device schedules periods of time during which it is enabled and disabled respectively, based upon the repetition rate of the indicator received such that the user device is enabled and receives the data directed towards more than one user device.
    • 一种在具有与多个用户设备(12)通信的中央控制器(14)的通信系统(10)中使用的方法,其中同步数据(34)和用户数据(35)在预定的时间段内被传送,所述预定时间段限定驻留 (30)。 用于将数据同时传送到多于一个用户设备(12)的方法同时包括以下步骤:提供与停留的至少一部分相关联的指示符(34),指示用户数据(35)的传输指向多于一个 用户设备(12),并且向用户设备通知发送指示符的重复率。 用户设备基于所接收到的指示符的重复率分别调度其被启用和禁用的时间段,使得用户设备被启用并且接收指向多于一个用户设备的数据。
    • 9. 发明授权
    • Method and apparatus for preserving packet squencing in a packet
transmission system
    • 用于在分组传输系统中保持分组排序的方法和装置
    • US5337313A
    • 1994-08-09
    • US975360
    • 1992-11-12
    • Dale R. BuchholzWilliam K. DossKaren E. RobbinsMark A. YednakR. Lee Hamilton, Jr.
    • Dale R. BuchholzWilliam K. DossKaren E. RobbinsMark A. YednakR. Lee Hamilton, Jr.
    • H04L12/28H04L12/46H04L12/56H04L29/08H04Q11/04H04W28/04
    • H04Q11/0478H04L2012/5616H04L2012/565
    • A method and apparatus for preserving the sequential relationship of a plurality of data packets 310 generated by separate source devices 14 and ordered as a data stream 300, despite transmission over radio channels which introduce ordering errors comprises method steps and apparatus structure for identifying at a first terminal, data packets from within the data stream as a function of source, generating data packet sequence information for identified data packets, storing values corresponding to data packet sequence numbers as a function of source and transmitting data packets, source device identity and packet sequence information to a second terminal having first terminal source device and data packet sequence information. Upon receipt of a first terminal transmission, the second terminal retrieves from second terminal memory, first terminal data packet sequence information and compares the stored data packet sequence information with received data packet sequence information. As a function of the comparison, received data packets are forwarded to an appropriate application for further processing when sequence information sequence numbers compare and stored in an order determined by the sequence information when the sequence numbers do not compare.
    • 尽管通过引入排序误差的无线电信道进行的传输,尽管通过无线电信道进行传输,用于保持由单独的源设备14生成并排序为数据流300的多个数据分组310的顺序关系的方法和装置包括方法步骤和装置结构, 终端,作为源的数据流内的数据分组,生成用于识别的数据分组的数据分组序列信息,存储与数据分组序列号对应的值作为源和发送数据分组的函数,源设备标识和分组序列信息 具有第一终端源设备和数据分组序列信息的第二终端。 在接收到第一终端传输时,第二终端从第二终端存储器检索第一终端数据分组序列信息,并将存储的数据分组序列信息与接收到的数据分组序列信息进行比较。 作为比较的功能,当序列号不比较时,当序列信息序列号按照序列信息确定的顺序进行比较和存储时,接收到的数据分组被转发到适当的应用以进一步处理。
    • 10. 发明授权
    • Method for reducing transmission delays in a packet transmission system
    • 一种用于减少分组传输系统中的传输延迟的方法
    • US5555266A
    • 1996-09-10
    • US131358
    • 1993-10-04
    • Dale R. BuchholzKaren E. RobbinsR. Lee Hamilton, Jr.William K. Doss
    • Dale R. BuchholzKaren E. RobbinsR. Lee Hamilton, Jr.William K. Doss
    • H04L1/16H04L12/28H04L12/56H04J3/16
    • H04L47/10H04L1/1614H04W72/044H04W28/14H04W72/042H04W74/004
    • A packet transmission system (100) with reduced transmission delays includes a communications controller (110) and a plurality of remote requesting units (112) requesting packet transmission services. Each remote unit (112) sequentially stores transmitted access requests (302) in a memory queue (500) and awaits a resource grant (306) from the communications controller (110). Upon receipt of a granted resource the remote unit (112) will apply the granted resource to the oldest request (502) stored in the queue (500) in order to transmit data (310) to the communications controller (110). A separate and distinct aspect of the transmission system (100) resides within the communications controller (110). In response to the receipt of a data packet (310) from a remote unit (112), the communications controller (110) identifies missing data within the data packet transmission, determines whether communication resources are available to support retransmission of the missing data, and if so, transmits a response to the requesting remote unit identifying the missing data and simultaneously granting sufficient resources for retransmission of the missing data.
    • 具有减少的传输延迟的分组传输系统(100)包括通信控制器(110)和请求分组传输服务的多个远程请求单元(112)。 每个远程单元(112)顺序地将发送的访问请求(302)存储在存储器队列(500)中,并且等待来自通信控制器(110)的资源准许(306)。 在接收到授权资源之后,远程单元(112)将所授予的资源应用于存储在队列(500)中的最早的请求(502),以便将数据(310)发送到通信控制器(110)。 传输系统(100)的单独和不同的方面位于通信控制器(110)内。 响应于从远程单元(112)接收到数据分组(310),通信控制器(110)识别数据分组传输中的丢失数据,确定通信资源是否可用于支持丢失数据的重传,以及 如果是,则向请求的远程单元发送识别丢失的数据的响应,并同时授予足够的资源用于重传丢失的数据。