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    • 1. 发明申请
    • SIGNAL DETECTION DEVICE AND SIGNAL DETECTION METHOD
    • 信号检测装置和信号检测方法
    • US20130148766A1
    • 2013-06-13
    • US13817668
    • 2012-03-07
    • Yoshio UrabeKazuhiro AndoMasataka IrieHiroshi Takahashi
    • Yoshio UrabeKazuhiro AndoMasataka IrieHiroshi Takahashi
    • H04L27/26
    • H04L27/2649H04B7/0828H04B17/327
    • In this signal detection device (100), a delaying unit (101) delays a first distributed signal or a second distributed signal distributed from a received signal for a period of time of T1 to form a first multiplication signal, and delays the one for a period of time of T2 (T2>T1) to form a second multiplication signal. An integrator (104) calculates a first correlation value by integrating the result of multiplying the first distributed signal and the first multiplication signal. An integrator (105) calculates a second correlation value by integrating the result of multiplying the second distributed signal and the second multiplication signal. An evaluation unit (108) evaluates whether the signal to be detected, which is a periodic signal with a period of T1 or a periodic signal with a period of T2, exists or not, on the basis of the first correlation value and the second correlation value.
    • 在该信号检测装置(100)中,延迟单元(101)将从接收信号分配的第一分布信号或第二分布信号延迟T1的时间段,以形成第一乘法信号,并将其延迟 T2(T2> T1)的时间段,形成第二个乘法信号。 积分器(104)通过对乘以第一分布式信号和第一乘法信号的结果进行积分来计算第一相关值。 积分器(105)通过对乘以第二分布信号和第二乘法信号的结果进行积分来计算第二相关值。 评估单元(108)基于第一相关值和第二相关性来评估是否存在周期为T1的周期信号或周期为T2的周期信号的被检测信号是否存在 值。
    • 4. 发明授权
    • Signal detection device and signal detection method
    • 信号检测装置及信号检测方法
    • US08923451B2
    • 2014-12-30
    • US13817668
    • 2012-03-07
    • Yoshio UrabeKazuhiro AndoMasataka IrieHiroshi Takahashi
    • Yoshio UrabeKazuhiro AndoMasataka IrieHiroshi Takahashi
    • H04L27/06H04L27/26H04B17/00H04B7/08
    • H04L27/2649H04B7/0828H04B17/327
    • In this signal detection device (100), a delaying unit (101) delays a first distributed signal or a second distributed signal distributed from a received signal for a period of time of T1 to form a first multiplication signal, and delays the one for a period of time of T2 (T2>T1) to form a second multiplication signal. An integrator (104) calculates a first correlation value by integrating the result of multiplying the first distributed signal and the first multiplication signal. An integrator (105) calculates a second correlation value by integrating the result of multiplying the second distributed signal and the second multiplication signal. An evaluation unit (108) evaluates whether the signal to be detected, which is a periodic signal with a period of T1 or a periodic signal with a period of T2, exists or not, on the basis of the first correlation value and the second correlation value.
    • 在该信号检测装置(100)中,延迟单元(101)将从接收信号分配的第一分布信号或第二分布信号延迟T1的时间段,以形成第一乘法信号,并将其延迟 T2(T2> T1)的时间段,形成第二个乘法信号。 积分器(104)通过对乘以第一分布式信号和第一乘法信号的结果进行积分来计算第一相关值。 积分器(105)通过对乘以第二分布信号和第二乘法信号的结果进行积分来计算第二相关值。 评估单元(108)基于第一相关值和第二相关性来评估是否存在周期为T1的周期信号或周期为T2的周期信号的被检测信号是否存在 值。
    • 5. 发明申请
    • Transmitting and receiving system, transmitting equipment, and transmitting method
    • 发射和接收系统,发射设备和传输方法
    • US20070086403A1
    • 2007-04-19
    • US11541659
    • 2006-10-03
    • Takeshi HatakeyamaAkifumi NagaoMasataka Irie
    • Takeshi HatakeyamaAkifumi NagaoMasataka Irie
    • H04Q7/24
    • H04L1/1887H04W28/18H04W72/1242
    • In a case where it is determined that communication data indicates a first data attribute in a transmitter, that communication data is transmitted and an acknowledgement signal is requested to be sent back from a receiver. If the acknowledgement signal is not sent back, that communication data is retransmitted. In a case where it is determined that the communication data indicates a second data attribute in the transmitter, that communication data is transmitted and an acknowledgement signal is requested to be sent back according to an allowable number of retransmissions corresponding to the second data attribute. And that communication data is retransmitted in accordance with the allowable number of retransmissions and presence or absence of the acknowledgement signal sent back. The allowable number of retransmissions corresponding to the second data attribute is smaller than that corresponding to the first data attribute.
    • 在确定通信数据指示发送机中的第一数据属性的情况下,发送该通信数据,并且请求从接收器发送确认信号。 如果确认信号未被发回,那么该通信数据被重发。 在确定通信数据指示发送器中的第二数据属性的情况下,发送该通信数据,并且根据对应于第二数据属性的可允许重传次数请求确认信号被发回。 并且该通信数据根据允许的重发次数以及发回的确认信号的存在或不存在被重传。 对应于第二数据属性的允许重传次数小于与第一数据属性对应的重发次数。
    • 9. 发明授权
    • Wireless device and wireless network system
    • 无线设备和无线网络系统
    • US07684757B2
    • 2010-03-23
    • US11305150
    • 2005-12-19
    • Taro MikamiSuguru OgawaAkifumi NagaoMasataka Irie
    • Taro MikamiSuguru OgawaAkifumi NagaoMasataka Irie
    • H04B17/00H04B7/00H04B15/00
    • H04W72/02H04W24/10
    • When the communication channel is to be changed, a more optimal communication channel is determined by summing up the results of measuring communication states transmitted from individual wireless terminals A, B, and C and making a collective judgment. Weighting coefficients are set to the individual wireless terminals A, B, and C. Values indicating whether or not the respective communication states of the individual wireless terminals are optimal with channels ch1 to ch4 to be used for communication (which are, e.g., 1, 0, 1, 2 with the respective channels ch1, ch2, ch3, and ch4 for the wireless terminal A and larger as the communication states are less optimal) are multiplied by the weight coefficient (the value of 3). The resulting values are summed up on a per-channel basis and the most optimal communication channel (of which the summed value is lowest) is selected. As a result, wave interference with the other wireless terminal is reduced.
    • 当要改变通信信道时,通过总结从各个无线终端A,B和C发送的测量通信状态的结果并进行集体判断来确定更优化的通信信道。 对各个无线终端A,B,C设定加权系数。表示各个无线终端的各通信状态是否最佳,通道ch1〜ch4用于通信(例如1, 0,1,2,对于无线终端A的各个信道ch1,ch2,ch3,ch4,通信状态较不优选)乘以权重系数(3)。 所得到的值在每个通道基础上相加,并且选择最佳的通信通道(其总和值最低)。 结果,减少了与另一无线终端的波干扰。