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    • 1. 发明授权
    • Dynamic determination of EV-DO control-channel bit rate based on forward-link timeslot utilization
    • 基于前向链路时隙利用的动态确定EV-DO控制信道比特率
    • US08358633B1
    • 2013-01-22
    • US11557759
    • 2006-11-08
    • Ryan S. TalleyAndrew M. Wurtenberger
    • Ryan S. TalleyAndrew M. Wurtenberger
    • H04J3/00
    • H04W28/22
    • Methods and systems are provided for dynamic determination of EV-DO control-channel bit rate based on forward-link timeslot utilization. Service is provided to access terminals on a carrier in a wireless coverage area. The carrier comprises timeslots that can be active or idle. Active timeslots comprise a data channel; idle timeslots do not. The data channel is arranged to transmit user-traffic information, and also to transmit control-channel information at a bit rate that can be set to a first or second value, where the second value is greater than the first value. A number of active timeslots on the carrier in the coverage area over a time period is determined. It is further determined whether that number is less than a threshold number. If so, the bit rate is set to the first value; if not, the bit rate is set to the second value.
    • 提供了基于前向链路时隙利用率的动态确定EV-DO控制信道比特率的方法和系统。 服务被提供给无线覆盖区域中的载波上的接入终端。 载波包括可以是活动的或空闲的时隙。 活动时隙包括数据信道; 空闲时隙没有。 数据信道被布置为发送用户业务信息,并且还以可以被设置为第一或第二值的比特率发送控制信道信息,其中第二值大于第一值。 确定一段时间内在覆盖区域中的载波上的多个活动时隙。 进一步确定该数量是否小于阈值数。 如果是,则将比特率设置为第一个值; 如果不是,则将比特率设置为第二值。
    • 2. 发明授权
    • Dynamic adjustment of forward-link traffic-channel power levels based on forward-link RF conditions
    • 基于前向链路RF条件的前向链路业务信道功率电平的动态调整
    • US08140101B1
    • 2012-03-20
    • US11688135
    • 2007-03-19
    • Andrew M. WurtenbergerRyan S. Talley
    • Andrew M. WurtenbergerRyan S. Talley
    • H04Q7/20
    • H04W52/346H04W52/16H04W52/367H04W52/50
    • Methods and systems are provided for dynamic adjustment of forward-link traffic-channel power levels based on forward-link RF conditions. In an exemplary embodiment, a base station provides service on a carrier in a wireless coverage area. The base station computes an Ec/Ior value for the carrier. Based at least in part on the computed Ec/Ior value, the base station adjusts at least one of an initial traffic-channel power level, a minimum traffic-channel power level, and a maximum traffic-channel power level for the carrier. As an example, if Ec/Ior is above a certain threshold, the base station may increase all three of the power levels, so as to improve service quality and coverage of its traffic channels, among other advantages.
    • 提供方法和系统,用于基于前向链路RF条件动态调整前向链路业务信道功率电平。 在示例性实施例中,基站在无线覆盖区域中的载波上提供服务。 基站计算载波的Ec / Ior值。 至少部分地基于所计算的Ec / Ior值,基站调整载波的初始业务信道功率电平,最小业务信道功率电平和最大业务信道功率电平中的至少一个。 作为示例,如果Ec / Ior高于某个阈值,则基站可以增加所有三个功率电平,以便提高其业务信道的服务质量和覆盖范围等优点。
    • 4. 发明授权
    • Prioritized EV-DO paging based on type of packet flow
    • 基于分组流类型的优先EV-DO寻呼
    • US08125967B1
    • 2012-02-28
    • US11558691
    • 2006-11-10
    • Ryan S. TalleyAndrew M. Wurtenberger
    • Ryan S. TalleyAndrew M. Wurtenberger
    • H04L12/54
    • H04W68/02H04W76/11
    • Methods and systems are provided for prioritized EV-DO paging based on type of packet flow. In an embodiment, an access node provides service to a plurality of access terminals in a wireless coverage area. The access node receives data addressed to a particular access terminal, where the data is associated with a packet flow such as a VoIP call. The access node determines that the access terminal does not have a traffic channel, and responsively generates a page for transmission to the access terminal, where the page is associated with the packet flow. The access node determines whether the packet flow is latency-sensitive or rather is latency-tolerant. If the packet flow is latency-sensitive, the access node responsively prioritizes the page over one or more pages respectively associated with one or more latency-tolerant packet flows, where the prioritizing is with respect to order of transmission in the wireless coverage area.
    • 基于分组流的类型,为优先化的EV-DO寻呼提供方法和系统。 在一个实施例中,接入节点向无线覆盖区域中的多个接入终端提供服务。 接入节点接收寻址到特定接入终端的数据,其中数据与诸如VoIP呼叫的分组流相关联。 接入节点确定接入终端不具有业务信道,并且响应地生成用于传输到接入终端的寻呼,其中该寻呼与分组流相关联。 接入节点确定分组流是延迟敏感的还是等待时间容忍的。 如果分组流是延迟敏感的,那么接入节点通过一个或多个分别与一个或多个等待时间容许分组流相关联的页响应地优先处理页面,其中优先级相对于无线覆盖区域中的传输顺序。
    • 5. 发明授权
    • Dynamic supplemental-channel burst duration
    • 动态补充信道突发持续时间
    • US08059591B1
    • 2011-11-15
    • US11674927
    • 2007-02-14
    • Ryan S. TalleyAndrew M. Wurtenberger
    • Ryan S. TalleyAndrew M. Wurtenberger
    • H04W72/00
    • H04W72/1252H04W72/0446
    • Methods and systems are provided for dynamic supplemental-channel (SCH) burst duration. In an exemplary embodiment, a base station provides a wireless coverage area having a plurality of traffic channels, an SCH, an SCH queue, and an SCH burst duration initially set to a first value. The base station computes Ec/Ior for the coverage area, and determines (i) whether the computed Ec/Ior is greater than an RF threshold, (ii) whether the number of mobile stations in the SCH queue is less than a queue threshold, and (iii) whether the number of mobile stations having a traffic channel in the coverage area is less than a traffic-channel threshold. The base station determines a second value based at least in part on each of those determinations, and operates with the SCH burst duration set to the second value.
    • 提供了用于动态补充信道(SCH)突发持续时间的方法和系统。 在示例性实施例中,基站提供具有多个业务信道,SCH,SCH队列和最初设置为第一值的SCH突发持续时间的无线覆盖区域。 基站计算覆盖区域的Ec / Ior,并确定(i)所计算的Ec / Ior是否大于RF阈值,(ii)SCH队列中的移动站的数量是否小于队列阈值, 以及(iii)在覆盖区域中具有业务信道的移动站的数量是否小于业务信道阈值。 基站至少部分地基于这些确定中的每一个来确定第二值,并且以设置为第二值的SCH突发持续时间来操作。
    • 7. 发明授权
    • Dynamic Adjustment of the pilot-channel, paging-channel, and sync-channel transmission-power levels based on forward-link and reverse-link RF conditions
    • 基于前向链路和反向链路RF条件的导频信道,寻呼信道和同步信道传输功率电平的动态调整
    • US07787899B1
    • 2010-08-31
    • US11681867
    • 2007-03-05
    • Ryan S. TalleyAndrew M. Wurtenberger
    • Ryan S. TalleyAndrew M. Wurtenberger
    • H04B7/00
    • H04W52/325
    • Methods and systems are provided for dynamic adjustment of the pilot-channel, paging-channel, and sync-channel transmission-power levels based on forward-link and reverse-link RF conditions. In an exemplary embodiment, a base station provides service on a carrier in a wireless coverage area, and computes both an Ec/Ior value and a reverse noise rise (RNR) value for the carrier. Based at least in part on the Ec/Ior value and at least in part on the RNR value, the base station adjusts at least one of a pilot-channel power level, a paging-channel power level, and a sync-channel power level for the carrier. As an example, if (a) Ec/Ior is above a first threshold and (b) RNR is below a second threshold, the base station may increase all three of the power levels, so as to improve service quality and coverage, among other advantages.
    • 提供方法和系统用于基于前向链路和反向链路RF条件的导频信道,寻呼信道和同步信道发射功率电平的动态调整。 在示例性实施例中,基站在无线覆盖区域中的载波上提供服务,并且计算载波的Ec / Ior值和反向噪声上升(RNR)值。 至少部分地基于Ec / Ior值,并且至少部分地基于RNR值,基站调整导频信道功率电平,寻呼信道功率电平和同步信道功率电平中的至少一个 为承运人 作为示例,如果(a)Ec / Ior高于第一阈值,并且(b)RNR低于第二阈值,则基站可以增加所有三个功率电平,以便提高服务质量和覆盖范围等 优点。