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    • 2. 发明授权
    • Wireless communication system and base station
    • 无线通信系统和基站
    • US07907951B2
    • 2011-03-15
    • US12603621
    • 2009-10-22
    • Daigo TakayanagiKiyoshi KawamotoShiro Mazawa
    • Daigo TakayanagiKiyoshi KawamotoShiro Mazawa
    • H04W72/00
    • H04W88/08H04W28/20H04W28/22
    • Admission control wireless resources including abase station which obtains a down wireless resource available rate based on a down QoS requested bandwidth Bi requested by a terminal i during QoS communication and a data rate Ri which the terminal can receive. A down wireless resource usage rate is obtained by dividing a down QoS requested bandwidth B requested by the terminal trying to perform QoS communication by the data rate R which the terminal can receive. An up wireless resource available rate is obtained based on ROT of an up channel and a threshold value T1 indicating an allowable upper limit of the ROT. The QoS communication is performed on the terminal in which the up and down wireless resource available rates are respectively equal to or more than the up and down wireless resource usage rates.
    • 接入控制无线资源,包括根据在QoS通信期间由终端i请求的降低QoS请求带宽Bi和终端可以接收的数据速率Ri获得下行无线资源可用速率的基站。 通过将终端可以接收的数据速率R除以由终端尝试进行QoS通信的终端所请求的下降QoS请求带宽B来获得下行无线资源使用率。 基于上行信道的ROT和指示ROT的允许上限的阈值T1获得上行无线资源可用率。 在上行和下行无线资源可用速率分别等于或大于上下无线资源使用率的终端上进行QoS通信。
    • 7. 发明申请
    • WIRELESS COMMUNICATION SYSTEM AND BASE STATION
    • 无线通信系统和基站
    • US20100040013A1
    • 2010-02-18
    • US12603621
    • 2009-10-22
    • Daigo TAKAYANAGIKiyoshi KawamotoShiro Mazawa
    • Daigo TAKAYANAGIKiyoshi KawamotoShiro Mazawa
    • H04W72/04
    • H04W88/08H04W28/20H04W28/22
    • Admission control wireless resources including abase station which obtains a down wireless resource available rate based on a down QoS requested bandwidth Bi requested by a terminal i during QoS communication and a data rate Ri which the terminal can receive. A down wireless resource usage rate is obtained by dividing a down QoS requested bandwidth B requested by the terminal trying to perform QoS communication by the data rate R which the terminal can receive. An up wireless resource available rate is obtained based on ROT of an up channel and a threshold value T1 indicating an allowable upper limit of the ROT. The QoS communication is performed on the terminal in which the up and down wireless resource available rates are respectively equal to or more than the up and down wireless resource usage rates.
    • 接入控制无线资源,包括根据在QoS通信期间由终端i请求的降低QoS请求带宽Bi和终端可以接收的数据速率Ri获得下行无线资源可用速率的基站。 通过将终端可以接收的数据速率R除以由终端尝试进行QoS通信的终端所请求的下降QoS请求带宽B来获得下行无线资源使用率。 基于上行信道的ROT和指示ROT的允许上限的阈值T1获得上行无线资源可用率。 在上行和下行无线资源可用速率分别等于或大于上下无线资源使用率的终端上进行QoS通信。
    • 8. 发明授权
    • Wireless communication system and base station
    • 无线通信系统和基站
    • US07634278B2
    • 2009-12-15
    • US11476058
    • 2006-06-28
    • Daigo TakayanagiKiyoshi KawamotoShiro Mazawa
    • Daigo TakayanagiKiyoshi KawamotoShiro Mazawa
    • H04W72/00H04L12/28
    • H04W88/08H04W28/20H04W28/22
    • There is provided admission control in view of wireless resources. A base station 120 obtains a down wireless resource available rate (available rate of slot allocation) based on a down QoS requested bandwidth Bi requested by a terminal i during QoS communication and a data rate Ri which the terminal can receive. A down wireless resource usage rate necessary to ensure the requested bandwidth B is obtained by dividing a down QoS requested bandwidth B requested by the terminal trying to perform QoS communication by the data rate R which the terminal can receive. The base station 120 obtains an up wireless resource available rate based on ROT of an up channel and a threshold value T1 indicating an allowable upper limit of the ROT. Besides, an up wireless resource usage rate necessary to ensure an up requested bandwidth requested by the terminal is obtained. The QoS communication is performed on the terminal in which the up and down wireless resource available rates are respectively equal to or more than the up and down wireless resource usage rates.
    • 鉴于无线资源,提供入门控制。 基站120基于在QoS通信期间由终端i请求的下行QoS请求带宽Bi和终端可以接收的数据速率Ri,获得下行无线资源可用速率(时隙分配的可用速率)。 通过将尝试执行QoS通信的终端请求的下降QoS请求带宽B除以终端可以接收的数据速率R来获得确保所请求带宽B所需的下行无线资源使用率。 基站120基于上行信道的ROT和表示ROT的允许上限的阈值T1获得上行无线资源可用率。 此外,获得确保终端请求的上升请求带宽所需的上行无线资源使用率。 在上行和下行无线资源可用速率分别等于或大于上下无线资源使用率的终端上进行QoS通信。