SCHEDULING DEVICE AND SCHEDULING METHOD
    1.
    发明申请
    SCHEDULING DEVICE AND SCHEDULING METHOD 审中-公开
    调度装置和调度方法

    公开(公告)号:US20120063469A1

    公开(公告)日:2012-03-15

    申请号:US13256591

    申请日:2010-03-15

    IPC分类号: H04L12/66

    CPC分类号: H04W72/085 H04W72/042

    摘要: Provided are a scheduling device and a scheduling method, in which the amount of signaling of frequency resource allocation information can be reduced while the system throughput is maintained. In a base station device (100), a scheduling unit (113) selects, as an allocation resource for a terminal to which resources are to be allocated, at most one cluster band in each of a plurality of allocatable ranges set within a system band and generates allocation resource information including information relating to the selected cluster, and an encoding unit (114), a modulation unit (115), and a transmission RF unit (116) which serve as a transmission means transmit the allocation resource information generated by the scheduling unit (113) to the terminal to which the resources are to be allocated. Among the plurality of allocatable ranges, a first allocatable range is the entire system band, while a second allocatable range is a low frequency-side band or a high frequency-side band when the system band is divided into halves.

    摘要翻译: 提供了一种调度装置和调度方法,其中可以在保持系统吞吐量的同时减少频率资源分配信息的信令量。 在基站装置(100)中,调度部(113)在系统频带内设定的多个可分配范围的每一个中,选择作为分配资源的终端的分配资源, 并生成包括与所选择的群集有关的信息的分配资源信息,作为发送单元的编码单元(114),调制单元(115)和发送RF单元(116)发送由 调度单元(113)发送到要向其分配资源的终端。 在多个可分配范围中,第一可分配范围是整个系统频带,而当系统频带被分成两半时,第二可分配范围是低频侧频带或高频侧频带。

    RADIO RECEIVER APPARATUS AND RADIO TRANSMITTER APPARATUS
    2.
    发明申请
    RADIO RECEIVER APPARATUS AND RADIO TRANSMITTER APPARATUS 有权
    无线电接收设备和无线电发射机设备

    公开(公告)号:US20090239484A1

    公开(公告)日:2009-09-24

    申请号:US11908093

    申请日:2006-03-10

    IPC分类号: H04B1/02 G06F3/033

    摘要: A radio receiver apparatus that can effectively utilize GI to improve the reception quality. In this apparatus, a data extracting part (104) extracts a data portion of a direct wave from a signal subjected to a radio reception process by a received RF part (102). A GI extracting part (107) extracts, from the signal subjected to the radio reception process by the received RF part (102), GI having a length determined by an extracted GI length deciding part (106). The extracted GI is adjusted by a data position adjusting part (108) such that its rear end coincides with the read end of the extracted data portion. A combining part (109) combines the extracted data portion with the GI the data position of which has been adjusted. The combined signal is then supplied to a frequency axis equalizing part (110), which equalizes the signal distortions of the combined signal on the frequency axis.

    摘要翻译: 能够有效地利用GI来提高接收质量的无线接收装置。 在该装置中,数据提取部(104)从接收到的RF部(102)的无线接收处理的信号中提取直接波的数据部分。 GI提取部分(107)从接收到的RF部分(102)的经过无线电接收处理的信号中提取具有由提取的GI长度确定部分(106)确定的长度的GI。 提取的GI由数据位置调整部(108)调整,使得其后端与提取的数据部分的读取端一致。 组合部分(109)将提取的数据部分与其数据位置已被调整的GI组合。 然后将组合的信号提供给频率轴均衡部分(110),其使得频率轴上的组合信号的信号失真均衡。

    Radio communication system, mobile station apparatus, and RACH transmission method
    3.
    发明授权
    Radio communication system, mobile station apparatus, and RACH transmission method 有权
    无线电通信系统,移动站装置和RACH传输方法

    公开(公告)号:US08908655B2

    公开(公告)日:2014-12-09

    申请号:US12298693

    申请日:2007-04-26

    摘要: Provided is a mobile station device capable of performing RACH transmission with a small amount of resources. In this device, a RACH generating unit (111) is formed by a signature selection unit (112) and a modulation unit (113). A RACH signal is generated as follows. That is, according to inputted RACH re-transmission quantity information, the signature selection unit (112) selects one code sequence as a signature from a plurality of different code sequences. The modulation unit (113) modulates the signature (code sequence) and generates a RACH signal. A multiplexing unit (116) time-multiplexes the RACH signal inputted from the modulation unit (113) and user data inputted from the modulation unit (115). A radio transmission unit (117) subjects the multiplexed signal to radio processing and transmits it via an antenna (121).

    摘要翻译: 提供能够以少量的资源进行RACH传输的移动站装置。 在该装置中,由签名选择部(112)和调制部(113)构成RACH生成部(111)。 如下生成RACH信号。 也就是说,根据输入的RACH重传量信息,签名选择部(112)从多个不同的代码序列中选择一个代码序列作为签名。 调制单元(113)调制签名(代码序列)并产生RACH信号。 复用单元(116)对从调制单元(113)输入的RACH信号和从调制单元(115)输入的用户数据进行时分复用。 无线发送单元(117)对多路复用信号进行无线处理,经由天线(121)发送。

    RADIO TRANSMISSION DEVICE, AND RADIO TRANSMISSION METHOD
    4.
    发明申请
    RADIO TRANSMISSION DEVICE, AND RADIO TRANSMISSION METHOD 有权
    无线电传输设备和无线电传输方法

    公开(公告)号:US20110002321A1

    公开(公告)日:2011-01-06

    申请号:US12882032

    申请日:2010-09-14

    IPC分类号: H04B7/216

    摘要: Provided are a radio transmission device and a radio transmission method, which prevent the deterioration of a preamble detecting performance while reducing the collision probability of a RACH. In this radio transmission device, a Signature table storage unit (103) divides the magnitudes of transmission loss levels into individual levels corresponding to the distances from a base station, to cause CAZAC series and circulation shift quantities to correspond to each other at the individual levels, and is provided with a table containing a plurality of Signatures created from the CAZAC series and the circulation shift quantities caused to correspond to each other. A Signature selecting unit (104) selects one of the corresponding Signatures at random from the Signature table storage unit (103), on the basis of the magnitude of the transmission loss level outputted from a transmission loss level deciding unit (102). A RACH signal generating unit (105) generates the RACH signal with the Signature selected.

    摘要翻译: 提供一种无线传输装置和无线传输方法,其防止前导码检测性能的劣化,同时降低RACH的冲突概率。 在该无线发送装置中,签名表存储部(103)将传输损耗级别的大小划分为与基站的距离对应的各个级别,使得CAZAC序列和循环移位量在各个级别彼此对应 并且设置有包含从CAZAC系列创建的多个签名和导致彼此对应的循环移位量的表。 签名选择单元(104)根据从传输损失等级决定单元(102)输出的传输损耗电平的大小,从签名表存储单元(103)中随机选择一个对应的签名。 RACH信号生成单元(105)在选择了签名的情况下生成RACH信号。

    Radio transmission device, and radio transmission method
    5.
    发明授权
    Radio transmission device, and radio transmission method 有权
    无线传输设备,无线传输方式

    公开(公告)号:US08422484B2

    公开(公告)日:2013-04-16

    申请号:US12882032

    申请日:2010-09-14

    IPC分类号: H04J3/06

    摘要: Provided are a radio transmission device and a radio transmission method, which prevent the deterioration of a preamble detecting performance while reducing the collision probability of a RACH. In this radio transmission device, a Signature table storage unit (103) divides the magnitudes of transmission loss levels into individual levels corresponding to the distances from a base station, to cause CAZAC series and circulation shift quantities to correspond to each other at the individual levels, and is provided with a table containing a plurality of Signatures created from the CAZAC series and the circulation shift quantities caused to correspond to each other. A Signature selecting unit (104) selects one of the corresponding Signatures at random from the Signature table storage unit (103), on the basis of the magnitude of the transmission loss level outputted from a transmission loss level deciding unit (102). A RACH signal generating unit (105) generates the RACH signal with the Signature selected.

    摘要翻译: 提供一种无线传输装置和无线传输方法,其防止前导码检测性能的劣化,同时降低RACH的冲突概率。 在该无线发送装置中,签名表存储部(103)将传输损耗级别的大小划分为与基站的距离对应的各个级别,使得CAZAC序列和循环移位量在各个级别彼此对应 并且设置有包含从CAZAC系列创建的多个签名和导致彼此对应的循环移位量的表。 签名选择单元(104)根据从传输损失等级决定单元(102)输出的传输损耗电平的大小,从签名表存储单元(103)中随机选择一个对应的签名。 RACH信号生成单元(105)在选择了签名的情况下生成RACH信号。

    RADIO COMMUNICATION SYSTEM, MOBILE STATION APPARATUS, AND RACH TRANSMISSION METHOD
    6.
    发明申请
    RADIO COMMUNICATION SYSTEM, MOBILE STATION APPARATUS, AND RACH TRANSMISSION METHOD 有权
    无线电通信系统,移动站设备和天线传输方法

    公开(公告)号:US20090213813A1

    公开(公告)日:2009-08-27

    申请号:US12298693

    申请日:2007-04-26

    IPC分类号: H04B7/216 H04J3/00

    摘要: Provided is a mobile station device capable of performing RACH transmission with a small amount of resources. In this device, a RACH generating unit (111) is formed by a signature selection unit (112) and a modulation unit (113). A RACH signal is generated as follows. That is, according to inputted RACH re-transmission quantity information, the signature selection unit (112) selects one code sequence as a signature from a plurality of different code sequences. The modulation unit (113) modulates the signature (code sequence) and generates a RACH signal. A multiplexing unit (116) time-multiplexes the RACH signal inputted from the modulation unit (113) and user data inputted from the modulation unit (115). A radio transmission unit (117) subjects the multiplexed signal to radio processing and transmits it via an antenna (121).

    摘要翻译: 提供能够以少量的资源进行RACH传输的移动站装置。 在该装置中,由签名选择部(112)和调制部(113)构成RACH生成部(111)。 如下生成RACH信号。 也就是说,根据输入的RACH重传量信息,签名选择部(112)从多个不同的代码序列中选择一个代码序列作为签名。 调制单元(113)调制签名(代码序列)并产生RACH信号。 复用单元(116)对从调制单元(113)输入的RACH信号和从调制单元(115)输入的用户数据进行时分复用。 无线发送单元(117)对多路复用信号进行无线处理,经由天线(121)发送。

    Radio receiver apparatus and radio transmitter apparatus
    7.
    发明授权
    Radio receiver apparatus and radio transmitter apparatus 有权
    无线电接收装置和无线电发射机装置

    公开(公告)号:US08369806B2

    公开(公告)日:2013-02-05

    申请号:US11908093

    申请日:2006-03-10

    IPC分类号: G06F3/033

    摘要: A radio receiver apparatus that can effectively utilize GI to improve the reception quality. In this apparatus, a data extracting part (104) extracts a data portion of a direct wave from a signal subjected to a radio reception process by a received RF part (102). A GI extracting part (107) extracts, from the signal subjected to the radio reception process by the received RF part (102), GI having a length determined by an extracted GI length deciding part (106). The extracted GI is adjusted by a data position adjusting part (108) such that its rear end coincides with the read end of the extracted data portion. A combining part (109) combines the extracted data portion with the GI the data position of which has been adjusted. The combined signal is then supplied to a frequency axis equalizing part (110), which equalizes the signal distortions of the combined signal on the frequency axis.

    摘要翻译: 能够有效地利用GI来提高接收质量的无线接收装置。 在该装置中,数据提取部(104)从接收到的RF部(102)的无线接收处理的信号中提取直接波的数据部。 GI提取部分(107)从接收到的RF部分(102)的经过无线电接收处理的信号中提取具有由提取的GI长度确定部分(106)确定的长度的GI。 提取的GI由数据位置调整部(108)调整,使得其后端与提取的数据部分的读取端一致。 组合部分(109)将提取的数据部分与其数据位置已被调整的GI组合。 然后将组合的信号提供给频率轴均衡部分(110),其使得频率轴上的组合信号的信号失真均衡。

    Radio transmission device, and radio transmission method
    8.
    发明授权
    Radio transmission device, and radio transmission method 有权
    无线传输设备,无线传输方式

    公开(公告)号:US07821991B2

    公开(公告)日:2010-10-26

    申请号:US12278543

    申请日:2007-02-09

    IPC分类号: H04W4/00

    摘要: Provided are a radio transmission device and a radio transmission method, which prevent the deterioration of a preamble detecting performance while reducing the collision probability of a RACH. In this radio transmission device, a Signature table storage unit (103) divides the magnitudes of transmission loss levels into individual levels corresponding to the distances from a base station, to cause CAZAC series and circulation shift quantities to correspond to each other at the individual levels, and is provided with a table containing a plurality of Signatures created from the CAZAC series and the circulation shift quantities caused to correspond to each other. A Signature selecting unit (104) selects one of the corresponding Signatures at random from the Signature table storage unit (103), on the basis of the magnitude of the transmission loss level outputted from a transmission loss level deciding unit (102). A RACH signal generating unit (105) generates the RACH signal with the Signature selected.

    摘要翻译: 提供一种无线传输装置和无线传输方法,其防止前导码检测性能的劣化,同时降低RACH的冲突概率。 在该无线发送装置中,签名表存储部(103)将传输损耗级别的大小划分为与基站的距离对应的各个级别,使得CAZAC序列和循环移位量在各个级别彼此对应 并且设置有包含从CAZAC系列创建的多个签名和导致彼此对应的循环移位量的表。 签名选择单元(104)根据从传输损失等级决定单元(102)输出的传输损耗电平的大小,从签名表存储单元(103)中随机选择一个对应的签名。 RACH信号生成单元(105)在选择了签名的情况下生成RACH信号。

    RADIO TRANSMISSION DEVICE, AND RADIO TRANSMISSION METHOD
    9.
    发明申请
    RADIO TRANSMISSION DEVICE, AND RADIO TRANSMISSION METHOD 有权
    无线电传输设备和无线电传输方法

    公开(公告)号:US20090028065A1

    公开(公告)日:2009-01-29

    申请号:US12278543

    申请日:2007-02-09

    IPC分类号: H04L12/26

    摘要: Provided are a radio transmission device and a radio transmission method, which prevent the deterioration of a preamble detecting performance while reducing the collision probability of a RACH. In this radio transmission device, a Signature table storage unit (103) divides the magnitudes of transmission loss levels into individual levels corresponding to the distances from a base station, to cause CAZAC series and circulation shift quantities to correspond to each other at the individual levels, and is provided with a table containing a plurality of Signatures created from the CAZAC series and the circulation shift quantities caused to correspond to each other. A Signature selecting unit (104) selects one of the corresponding Signatures at random from the Signature table storage unit (103), on the basis of the magnitude of the transmission loss level outputted from a transmission loss level deciding unit (102). A RACH signal generating unit (105) generates the RACH signal with the Signature selected.

    摘要翻译: 提供一种无线传输装置和无线传输方法,其防止前导码检测性能的劣化,同时降低RACH的冲突概率。 在该无线发送装置中,签名表存储部(103)将传输损耗级别的大小划分为与基站的距离对应的各个级别,使得CAZAC序列和循环移位量在各个级别彼此对应 并且设置有包含从CAZAC系列创建的多个签名和导致彼此对应的循环移位量的表。 签名选择单元(104)根据从传输损失等级决定单元(102)输出的传输损耗电平的大小,从签名表存储单元(103)中随机选择一个对应的签名。 RACH信号生成单元(105)在选择了签名的情况下生成RACH信号。

    Wireless transmitter and reference signal transmission method

    公开(公告)号:US10263744B2

    公开(公告)日:2019-04-16

    申请号:US13146611

    申请日:2010-01-28

    摘要: Disclosed are a wireless transmitter and a reference signal transmission method that improve channel estimation accuracy. In a terminal (100), which transmits a reference signal using n (n is a non-negative integer 2 or greater) band blocks (which correspond to clusters here), which are disposed with spaces therebetween in a frequency direction, a reference signal controller (106) switches the reference signal formation method of a reference signal generator (107) between a first formation method and a second formation method based on the number (n) of band blocks. In addition, a threshold value setting unit (105) adjusts a switching threshold value based on the frequency spacing between band blocks. Thus, the reference signal formation method can be selected with good accuracy and, as a result, channel estimation accuracy is further improved.