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    • 1. 发明授权
    • Method and apparatus for controlling access to a communication channel
    • 用于控制对通信信道的访问的方法和装置
    • US07457307B1
    • 2008-11-25
    • US11195876
    • 2005-08-03
    • Herman ChienJin-Meng HoLiang A. HongEliott HooleKin K. Leung
    • Herman ChienJin-Meng HoLiang A. HongEliott HooleKin K. Leung
    • H04L12/413
    • H04W74/0816H04W74/002H04W74/0833
    • A method and an apparatus provide for controlled access to a shared communication medium. Time slots on a forward channel include information regarding status useful for remote units to determine whether a reverse channel is available for seizure. Additionally, information along the forward channel provides guidance to the remote units to control attempts to seize the reverse channel. In one embodiment a remote unit divides a data package into a plurality of portions and attempts to seize the reverse channel using a single portion of the data package which corresponds to one time slot on the reverse channel. It then waits until it receives notification along the forward channel that the first data portion was successfully received before it attempts to send any of the remainder of its data in consecutive time slots on the reverse channel.
    • 方法和装置提供对共享通信介质的受控访问。 前向信道上的时隙包括关于用于远程单元确定反向信道是否可用于发作的状态的信息。 另外,沿着前向信道的信息为远程单元提供指导,以控制占用反向信道的尝试。 在一个实施例中,远程单元将数据包分成多个部分,并尝试使用对应于反向信道上的一个时隙的数据包的单个部分来占用反向信道。 然后它等待直到它在前向信道上接收到第一数据部分被成功接收到的通知,然后它尝试在反向信道上的连续时隙中发送其数据的其余部分。
    • 2. 发明授权
    • Method and apparatus for controlling access to a communication channel
    • 用于控制对通信信道的访问的方法和装置
    • US07881328B2
    • 2011-02-01
    • US12267258
    • 2008-11-07
    • Herman ChienJin-Meng HoLiang A. HongElliott HooleKin K. Leung
    • Herman ChienJin-Meng HoLiang A. HongElliott HooleKin K. Leung
    • H04L12/413
    • H04W74/0816H04W74/002H04W74/0833
    • A method and an apparatus provide for controlled access to a shared communication medium. Time slots on a forward channel include information regarding status useful for remote units to determine whether a reverse channel is available for seizure. Additionally, information along the forward channel provides guidance to the remote units to control attempts to seize the reverse channel. In one embodiment a remote unit divides a data package into a plurality of portions and attempts to seize the reverse channel using a single portion of the data package which corresponds to one time slot on the reverse channel. It then waits until it receives notification along the forward channel that the first data portion was successfully received before it attempts to send any of the remainder of its data in consecutive time slots on the reverse channel.
    • 方法和装置提供对共享通信介质的受控访问。 前向信道上的时隙包括关于用于远程单元确定反向信道是否可用于发作的状态的信息。 此外,沿着前向信道的信息为远程单元提供指导以控制占用反向信道的尝试。 在一个实施例中,远程单元将数据包分成多个部分,并尝试使用对应于反向信道上的一个时隙的数据包的单个部分来占用反向信道。 然后它等待直到它在前向信道上接收到第一数据部分被成功接收到的通知,然后它尝试在反向信道上的连续时隙中发送其数据的其余部分。
    • 3. 发明申请
    • METHOD AND APPARATUS FOR CONTROLLING ACCESS TO A COMMUNICATION CHANNEL
    • 用于控制通信通道访问的方法和装置
    • US20090092155A1
    • 2009-04-09
    • US12267258
    • 2008-11-07
    • Herman CHIENJin-Meng HoLiang A. HongElliott HooleKin K. Leung
    • Herman CHIENJin-Meng HoLiang A. HongElliott HooleKin K. Leung
    • H04J3/00
    • H04W74/0816H04W74/002H04W74/0833
    • A method and an apparatus provide for controlled access to a shared communication medium. Time slots on a forward channel include information regarding status useful for remote units to determine whether a reverse channel is available for seizure. Additionally, information along the forward channel provides guidance to the remote units to control attempts to seize the reverse channel. In one embodiment a remote unit divides a data package into a plurality of portions and attempts to seize the reverse channel using a single portion of the data package which corresponds to one time slot on the reverse channel. It then waits until it receives notification along the forward channel that the first data portion was successfully received before it attempts to send any of the remainder of its data in consecutive time slots on the reverse channel.
    • 方法和装置提供对共享通信介质的受控访问。 前向信道上的时隙包括关于用于远程单元确定反向信道是否可用于发作的状态的信息。 此外,沿着前向信道的信息为远程单元提供指导以控制占用反向信道的尝试。 在一个实施例中,远程单元将数据包分成多个部分,并尝试使用对应于反向信道上的一个时隙的数据包的单个部分来占用反向信道。 然后它等待直到它在前向信道上接收到第一数据部分被成功接收到的通知,然后它尝试在反向信道上的连续时隙中发送其数据的其余部分。
    • 5. 发明授权
    • Methods and apparatus for dynamically assigning time slots in a wireless communication system
    • 在无线通信系统中动态分配时隙的方法和装置
    • US06801513B1
    • 2004-10-05
    • US09597044
    • 2000-06-20
    • David B. GibbonsEamonn GormleyLiang A. HongElliott HooleKamyar Moinzadeh
    • David B. GibbonsEamonn GormleyLiang A. HongElliott HooleKamyar Moinzadeh
    • H04J116
    • H04W72/0446H04W24/10H04W72/02H04W74/00
    • A wireless communication system having a base unit and a plurality of remote transceiver units utilizes a dynamic time slot assignment scheme for channel access. The base unit receives and processes a channel access request message from a remote transceiver unit and prepares a channel measurement request message in response. If an Mth time slot of a time frame is available, the base unit sends this message in the Mth time slot and receives a message having channel measurement data in the Mth time slot of the next time frame. On the other hand, if the Mth time slot of the time frame is already reserved, the base unit sends the message in an Nth time slot of the time frame and receives a message having the channel measurement data in the Nth time slot of the next time frame. The base unit selects, based on the channel measurement data, an appropriate channel for communication for the remote transceiver unit, Continuing with use of the dynamic slot assignment, the base unit sends a message having a channel identifier associated with the selected channel and receives an acknowledgement from the remote transceiver unit in response.
    • 具有基本单元和多个远程收发器单元的无线通信系统利用用于信道接入的动态时隙分配方案。 基站单元从远程收发器单元接收并处理信道接入请求消息,并准备响应的信道测量请求消息。 如果时间段的第M个时隙可用,则基站单元在第M个时隙中发送该消息,并在下一个时间帧的第M个时隙中接收具有信道测量数据的消息 。 另一方面,如果已经保留了时间帧的第M个时隙,则基站单元在时间帧的第N个时隙中发送消息,并且接收具有该时隙中的信道测量数据的消息 下一个时间帧的第N个时隙。 基站单元基于信道测量数据选择用于远程收发机单元的通信的适当信道。继续使用动态时隙分配,基站单元发送具有与所选信道相关联的信道标识符的消息,并接收 应答来自远程收发器单元的确认。
    • 6. 发明授权
    • Enhanced data link layer selective reject mechanism in noisy wireless environment
    • 在嘈杂的无线环境中增强数据链路层选择拒绝机制
    • US06629261B1
    • 2003-09-30
    • US09717498
    • 2000-11-21
    • Lakshmana Rao ChintadaLiang A. HongKamyar MoinzadehDonald P. Wahlstrom
    • Lakshmana Rao ChintadaLiang A. HongKamyar MoinzadehDonald P. Wahlstrom
    • G02H305
    • H04L1/1848H04L1/1621H04L1/1664H04L1/1685H04L1/1809
    • A method of recovering lost frames transmitted between a packet data sending unit and a packet data receiving unit in a data communications system is disclosed. When a frame is successfully received by the packet data receiving unit, it identifies a failure to successfully receive prior frames, i.e., at least one frame prior to the frame successfully received at the packet data receiving unit. The packet data receiving unit starts a selective reject wait timer and determines whether the number of frames missed so far is greater than or equal to a predetermined threshold. If the number of missed frames is greater than or equal to the preset limit, the packet data receiving unit generates a selective reject message that includes a payload indicating a first missed frame and subsequent missed frames. If the number of missed frames is less than the predetermined threshold, the packet data receiving unit waits until the expiration of the selective reject wait timer, or until after the next determination that the number of missed frames meets or exceeds the predetermined threshold. It then sends the selective reject message to the packet data sending unit. Upon successful receipt of the retransmitted missed frames from the packet data sending unit, the packet data receiving unit generates a receive ready message and sends the receive ready message to the packet data sending unit.
    • 公开了一种在数据通信系统中恢复分组数据发送单元与分组数据接收单元之间传输的丢失帧的方法。 当分组数据接收单元成功接收到帧时,它识别成功接收先前帧的失败,即,在分组数据接收单元成功接收到帧之前的至少一个帧。 分组数据接收单元启动选择性拒绝等待定时器,并确定到目前为止丢失的帧数是否大于或等于预定阈值。 如果丢失帧的数量大于或等于预设限制,则分组数据接收单元产生选择性拒绝消息,该消息包括指示第一丢失帧和后续丢帧的有效载荷。 如果丢失帧的数量小于预定阈值,则分组数据接收单元等待直到选择性拒绝等待定时器到期,或者直到下次确定后,错过的帧的数量满足或超过预定阈值。 然后将选择性拒绝消息发送到分组数据发送单元。 在从分组数据发送单元成功接收到重传的丢失帧之后,分组数据接收单元生成接收就绪消息,并将接收就绪消息发送到分组数据发送单元。
    • 7. 发明授权
    • Data link layer tunneling technique for high-speed data in a noisy wireless environment
    • 数据链路层隧道技术,用于嘈杂无线环境中的高速数据
    • US08234533B2
    • 2012-07-31
    • US12131636
    • 2008-06-02
    • Lakshmana Rao ChintadaLiang A. HongKamyar Moinzadeh
    • Lakshmana Rao ChintadaLiang A. HongKamyar Moinzadeh
    • H04L1/18
    • H04W28/06H04L1/1848H04L1/188H04L1/189
    • In accordance with the invention, a data link layer tunneling technique is disclosed for improving the throughput of high speed data in noisy wireless environments. The method for recovering lost frames transmitted between a packet sending unit and a packet receiving unit in a data communications system, and generally comprises the steps of: (a) identifying a failure to successfully receive a missed frame at the packet receiving unit; (b) establishing a logical tunnel channel at the packet receiving unit to acknowledge the next successfully received frame; (c) starting a first timer at the packet receiving unit; (c) upon receiving a tunnel establishment request from the packet receiving unit, the packet sending unit resending the missed frame on the logical tunnel channel and starting a second timer; and (d) the packet sending unit resending the missed frame a specified number of times until receiving an acknowledgement from the packet receiving unit.
    • 根据本发明,公开了一种用于在嘈杂的无线环境中提高高速数据的吞吐量的数据链路层隧道技术。 一种用于恢复在数据通信系统中的分组发送单元与分组接收单元之间发送的丢失帧的方法,并且通常包括以下步骤:(a)识别在分组接收单元处成功接收丢失帧的故障; (b)在分组接收单元处建立逻辑隧道信道以确认下一个成功接收的帧; (c)在分组接收单元处启动第一定时器; (d)在从所述分组接收单元接收到隧道建立请求后,所述分组发送单元重新发送所述逻辑隧道信道上的所述丢失帧,并启动第二定时器; 以及(e)所述分组发送单元重新发送所述错过帧指定的次数,直到从所述分组接收单元接收到确认。
    • 9. 发明授权
    • Method for improving efficiency in a time sharing network
    • 提高分时网络效率的方法
    • US06937609B1
    • 2005-08-30
    • US09546794
    • 2000-04-11
    • Liang A. Hong
    • Liang A. Hong
    • H04B7/212H04L12/28
    • H04W48/08H04W24/00H04W28/06H04W74/02H04W74/04H04W74/0841
    • The present invention provides methods for improving the performance and efficiency of time sharing wireless networks by reducing collisions, eliminating wasted bandwidth caused by unnecessary gaps between transmissions, and reducing the amount of control information broadcast from the base station. The present invention accomplishes this by synchronizing the actions of the remote units in the wireless network to the control messages sent by the base unit and having the base unit compensate for the inherent system latency in determining when control messages should be sent. The present invention also consolidates the functionality of some of the control messages in order to reduce bandwidth usage.
    • 本发明提供了通过减少冲突来改善时间共享无线网络的性能和效率的方法,消除了由传输之间的不必要的间隙引起的浪费的带宽,并且减少了从基站广播的控制信息的数量。 本发明通过将无线网络中的远程单元的动作与由基本单元发送的控制消息进行同步,并且在确定何时应当发送控制消息时,使基本单元补偿固有的系统延迟来实现这一点。 本发明还整合了一些控制消息的功能,以便减少带宽使用。
    • 10. 发明授权
    • Medium access dynamic congestion control mechanism for wireless data
    • 用于无线数据的媒体访问动态拥塞控制机制
    • US06765870B2
    • 2004-07-20
    • US09745219
    • 2000-12-21
    • Lakshmana Rao ChintadaLiang A. HongKamyar MoinzadehDonald P. Wahlstrom
    • Lakshmana Rao ChintadaLiang A. HongKamyar MoinzadehDonald P. Wahlstrom
    • G01R3108
    • H04W28/08H04L1/1621H04L1/188H04L47/10H04L47/30H04L49/90H04L49/9078H04W28/14
    • In a wireless communications system, a data link layer and a medium access control layer are connected to each other by data and control paths, where the data path is operable to exchange frames between the data link layer and the medium access control layer and the control path is operable to exchange control messages between the data link layer and the medium access control layer. The data link layer includes a queue for storing frames received from the medium access control layer and the medium access control layer includes a queue for storing frames received from the data link layer. The data link layer is adapted to pass new data frames from a higher layer relative to the data link layer into the data link layer queue and to suspend a retransmission timer upon a congestion message received from the medium access control layer, the congestion message being responsive to a level of stored frames in the medium access control queue.
    • 在无线通信系统中,数据链路层和介质访问控制层通过数据和控制路径彼此相连,其中数据路径可操作以在数据链路层和介质访问控制层之间交换帧,并且控制 路径可操作以在数据链路层和介质访问控制层之间交换控制消息。 数据链路层包括用于存储从介质访问控制层接收到的帧的队列,并且介质访问控制层包括用于存储从数据链路层接收的帧的队列。 数据链路层适用于将新的数据帧从数据链路层的较高层传递到数据链路层队列中,并且在从媒体接入控制层接收到的拥塞消息后暂停重发定时器,拥塞消息是响应的 到介质访问控制队列中的存储帧的级别。