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    • 1. 发明授权
    • Controlling radio connection states
    • 控制无线电连接状态
    • US09521700B2
    • 2016-12-13
    • US14379999
    • 2012-02-22
    • Hans HannuJan Christoffersson
    • Hans HannuJan Christoffersson
    • H04W76/04H04W52/02
    • H04W76/27H04W52/0216Y02D70/1242Y02D70/1244Y02D70/1246
    • Control of transitions between radio resource control, RRC, states for a wireless terminal in a radio access network is described. The radio resource control states comprise a first state and a second state. A calculation (702) is made of a prediction of an inter-arrival time, ITB, between data bursts to be handled. A detection (704) that a data burst is to be handled is done and then it is decided (706) whether to make a transition from the first state to the second state essentially immediately and upon termination of handling of the detected data burst if the prediction of the ITB is greater than a current ITB threshold. The current ITB threshold is a time interval that is depending on a function of RRC state transition costs and the fractional distribution of true predictions and false predictions of a plurality of predicted ITB values in relation to recorded ITB values. Then, in accordance with the decision, the wireless terminal is directed (708) either to remain in the first state or switch to the second state.
    • 描述无线电接入网络中的无线电资源控制,RRC,无线终端的状态之间的转换的控制。 无线电资源控制状态包括第一状态和第二状态。 对要处理的数据突发之间的到达间时间ITB的预测进行计算(702)。 完成数据脉冲串处理的检测(704),然后确定(706)是否基本上立即从第一状态到第二状态的转换,以及在检测到的数据突发的处理结束时 ITB的预测大于当前的ITB阈值。 当前的ITB阈值是一个时间间隔,该时间间隔取决于RRC状态转换成本的函数以及与记录的ITB值相关的多个预测ITB值的真实预测和虚假预测的分数分布。 然后,根据该决定,无线终端被引导(708)保持在第一状态或切换到第二状态。
    • 2. 发明申请
    • Controlling Radio Connection States
    • 控制无线电连接状态
    • US20150043460A1
    • 2015-02-12
    • US14379999
    • 2012-02-22
    • Hans HannuJan Christoffersson
    • Hans HannuJan Christoffersson
    • H04W76/04H04W52/02
    • H04W76/27H04W52/0216Y02D70/1242Y02D70/1244Y02D70/1246
    • Control of transitions between radio resource control, RRC, states for a wireless terminal in a radio access network is described. The radio resource control states comprise a first state and a second state. A calculation (702) is made of a prediction of an inter-arrival time, ITB, between data bursts to be handled. A detection (704) that a data burst is to be handled is done and then it is decided (706) whether to make a transition from the first state to the second state essentially immediately and upon termination of handling of the detected data burst if the prediction of the ITB is greater than a current ITB threshold. The current ITB threshold is a time interval that is depending on a function of RRC state transition costs and the fractional distribution of true predictions and false predictions of a plurality of predicted ITB values in relation to recorded ITB values. Then, in accordance with the decision, the wireless terminal is directed (708) either to remain in the first state or switch to the second state.
    • 描述无线电接入网络中的无线电资源控制,RRC,无线终端的状态之间的转换的控制。 无线电资源控制状态包括第一状态和第二状态。 对要处理的数据突发之间的到达间时间ITB的预测进行计算(702)。 完成数据脉冲串处理的检测(704),然后确定(706)是否基本上立即从第一状态到第二状态的转换,以及在检测到的数据突发的处理结束时 ITB的预测大于当前的ITB阈值。 当前的ITB阈值是一个时间间隔,该时间间隔取决于RRC状态转换成本的函数以及与记录的ITB值相关的多个预测ITB值的真实预测和虚假预测的分数分布。 然后,根据该决定,无线终端被引导(708)保持在第一状态或切换到第二状态。
    • 3. 发明授权
    • State-mediated data signaling used for compression in telecommunication services
    • 用于电信业务压缩的国家介入数据信令
    • US08621107B2
    • 2013-12-31
    • US10551082
    • 2004-03-26
    • Hans HannuJan Christoffersson
    • Hans HannuJan Christoffersson
    • G06F15/16
    • H04L69/04H03M7/30H04L67/14
    • The invention relates to message-based communication between at least two units (100; 200) participating in a communications session. A first communications unit (100) generates and stores a state (10) comprising unit-associated data applicable for multiple messages to be communicated between the unit (100) and a second unit (200). A copy of this state (10) is then transmitted to the second unit (200), where it is stored. The state (10) and state copy can now be used in message processing for the purpose of reducing the message size and reducing utilization of communications resources. Data contained in the state (10) or state copy and found in the message (m1) is removed from the message prior transmission thereof. The resulting reduced-size message (m1′USD) is transmitted to the receiving unit, where the message (m1′USD) is anew processed by re-entering the data, removed by the transmitting unit, into the message (m1′USD) using the state copy or state. The original message (m1) is then recreated.
    • 本发明涉及参与通信会话的至少两个单元(100; 200)之间的基于消息的通信。 第一通信单元(100)生成并存储包括适用于要在单元(100)和第二单元(200)之间传送的多个消息的单元相关数据的状态(10)。 然后将该状态(10)的副本发送到第二单元(200),在那里被存储。 现在可以在消息处理中使用状态(10)和状态拷贝,以减少消息大小并减少通信资源的利用。 在消息(m1)中发现的状态(10)或状态拷贝中包含的数据在传输之前被消除。 所产生的缩小尺寸消息(m1'USD)被发送到接收单元,其中通过将由发送单元移除的数据重新输入到消息(m1'USD)中来新消息(m1'USD) 使用状态复制或状态。 然后重新创建原始消息(m1)。
    • 4. 发明申请
    • Apparatus for Reduced Mode Transmission of DPCCH Signaling and Method Thereof
    • DPCCH信令的减少模式传输的装置及其方法
    • US20110188513A1
    • 2011-08-04
    • US13120478
    • 2008-09-24
    • Jan ChristofferssonHans HannuMin Wang
    • Jan ChristofferssonHans HannuMin Wang
    • H04J3/16
    • H04W28/06H04L1/1887
    • A telecommunication apparatus (100) enabled for high-speed packet access is disclosed. The apparatus (100) is arranged to operate according to a reduced and a further reduced mode of transmission of dedicated physical control channel transmission, and has an operation mode controller (102). The operation mode controller (102) is arranged to determine a number of present consecutive dedicated physical data channel transmissions, and if the number of present consecutive dedicated physical data channel transmissions reaches a threshold, set the operation mode to the reduced mode, or if the number of present consecutive dedicated physical data channel transmissions is below the threshold, set the operation mode to the further reduced mode. Corresponding method and computer program are also disclosed.
    • 公开了一种能够进行高速分组接入的电信设备(100)。 设备(100)被布置为根据专用物理控制信道传输的简化和进一步减少的传输模式进行操作,并且具有操作模式控制器(102)。 操作模式控制器(102)被设置为确定当前连续的专用物理数据信道传输的数量,并且如果当前连续的专用物理数据信道传输的数量达到阈值,则将操作模式设置为缩减模式,或者如果 当前连续的专用物理数据信道传输的数目低于阈值,将操作模式设置为进一步的减小模式。 还公开了相应的方法和计算机程序。
    • 5. 发明授权
    • Terminal having plural playback pointers for jitter buffer
    • 终端具有用于抖动缓冲器的多个重放指针
    • US07970020B2
    • 2011-06-28
    • US10974029
    • 2004-10-27
    • Hans HannuPer Synnergren
    • Hans HannuPer Synnergren
    • H04J3/06
    • H04L65/4061H04L49/90H04L49/901H04L65/608H04L65/80H04W76/45
    • A terminal (30, 30B) receives transmissions in a form of a media stream. The terminal comprises a jitter buffer (40) which receives data comprising the media stream and a buffer manager (80). The buffer manager (80) makes a selection between plural playback pointers as an operative playback pointer from which the data comprising the media stream is played out of the jitter buffer. In an example implementation, the buffer manager (80) updates at least one of the plural playback pointers. The manner and timing of the updating of the least one of the plural playback pointers can occur in any of a variety of ways. The terminal (30, 30B) can take various forms, and may be (for example) either a wireless terminal which receives the media stream across a radio interface, or a wireline terminal.
    • 终端(30,30B)以媒体流的形式接收传输。 终端包括抖动缓冲器(40),其接收包括媒体流的数据和缓冲器管理器(80)。 缓冲器管理器(80)在多个重放指针之间进行选择,作为从抖动缓冲器中播放包括媒体流的数据的操作重放指针。 在示例实现中,缓冲器管理器(80)更新多个重放指针中的至少一个。 多个重放指针中的至少一个的更新的方式和时间可以以各种方式中的任何一种发生。 终端(30,30B)可以采取各种形式,并且可以是(例如)通过无线电接口接收媒体流的无线终端或有线终端。
    • 8. 发明申请
    • Uplink Access Management
    • 上行链路访问管理
    • US20100069064A1
    • 2010-03-18
    • US12517170
    • 2007-01-15
    • Hans HannuTomas Jönsson
    • Hans HannuTomas Jönsson
    • H04W48/20H04B17/00
    • H04W72/005H04W4/10H04W48/06H04W76/45
    • The invention involves uplink access management for user terminals (210, 220, 230, 240, 250, 260, 270) present in a same first cell (15) of a communication system (1) and participating in a communication session involving communication of user data on a common downlink channel to the terminals (210, 220, 230, 240, 250, 260, 270). When the terminals (210, 220, 230, 240, 250, 260, 270) want to respond to the user data transmission, they first have to request uplink access. According to the invention, at least one of the terminals (220, 230, 240) requests this uplink access using a request channel associated with a second (25, 35, 45) cell different from the current first cell (15). This reduces the risk of collision of uplink access requests on the request channel by distributing the requests over several cells (15, 25, 35, 45) instead of a single cell (15).
    • 本发明涉及存在于通信系统(1)的相同第一小区(15)中的用户终端(210,220,230,240,250,260,270)的上行链路接入管理,并且参与涉及用户通信的通信会话 在公共下行链路信道上的数据到终端(210,220,230,240,250,260,270)。 当终端(210,220,230,240,250,260,270)希望响应用户数据传输时,它们首先必须请求上行链路接入。 根据本发明,至少一个终端(220,230,240)使用与不同于当前第一小区(15)的第二(25,35,45)小区相关联的请求信道来请求该上行链路接入。 这通过在几个小区(15,25,35,45)上分配请求而不是单个小区(15)来减少在请求信道上的上行链路接入请求的冲突的风险。
    • 9. 发明申请
    • Adapting playout buffer based on audio burst length
    • 根据音频突发长度调整播放缓冲区
    • US20070047515A1
    • 2007-03-01
    • US10595642
    • 2003-11-11
    • Tomas JonssonHans Hannu
    • Tomas JonssonHans Hannu
    • H04L12/66
    • H04L65/80H04L49/90H04L49/901H04L65/4061
    • The invention relates to a size variable playout buffer (120) adapted for temporarily storing data packets comprising bursty audio data received over a communications system (1) at user equipment (100). The temporary storage and size variability compensates for changes in bit-rate or any transmission delay over the communications system (1). According to the invention, the size of the playout buffer (120) is adapted based on the audio burst length. Typically, the buffer size is controlled based on length values of multiple audio bursts, e.g. an average of multiple audio burst lengths, including a weighted average length. The number (M) of audio burst lengths to be employed in the averaging is preferably dynamically determined based on an audio burst length (average) value. The playout buffer (120) is adapted for use in a communications system (1) supporting Push to talk over Cellular (PoC)
    • 本发明涉及适用于临时存储包括在用户设备(100)上通过通信系统(1)接收的突发音频数据的数据分组的大小可变播放缓冲器(120)。 临时存储和大小变化补偿通信系统(1)上的比特率或任何传输延迟的变化。 根据本发明,基于音频突发长度来适配播放缓冲器(120)的大小。 通常,基于多个音频突发的长度值来控制缓冲器大小,例如, 多个音频突发长度的平均值,包括加权平均长度。 在平均化中要使用的音频突发长度的数量(M)优选地基于音频突发长度(平均值)来动态地确定。 播放缓冲器(120)适用于支持通过蜂窝通信(PoC)通信的通信系统(1)