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    • 1. 发明授权
    • Rake combining circuit and rake combining method
    • 耙组合电路和耙组合方法
    • US07167455B2
    • 2007-01-23
    • US10240115
    • 2001-12-20
    • Hisashi Kondo
    • Hisashi Kondo
    • H04B7/216H04Q7/28H04B7/208H04B1/00
    • H04B1/707H04B1/712H04B2201/70701
    • Not only an instantaneous pilot symbol value resulting from correcting a phase of one demodulated pilot symbol in response to phase deviation of the one pilot symbol but also a pilot symbol value resulting from correcting a phase of the same pilot symbol corresponding to the instantaneous pilot symbol value in response to averaged phase deviation of a plurality of demodulated receive pilot symbols is calculated. Further, weight factors are generated on the basis of a difference between the instantaneous pilot symbol value and the pilot symbol value, and the respective demodulated receive data is weighted by using the weight factors to combine the receive data.
    • 不仅是响应于一个导频符号的相位偏差校正一个解调导频符号的相位而产生的瞬时导频符号值,而且还是由对应于瞬时导频符号值的相同导频符号的相位校正而导致的导频符号值 响应于多个解调的接收导频符号的平均相位偏差来计算。 此外,基于瞬时导频符号值和导频符号值之间的差异生成加权因子,并且通过使用加权因子对相应的解调的接收数据进行加权,以组合接收数据。
    • 5. 发明申请
    • COAL ASH TREATMENT METHOD AND APPARATUS
    • 煤灰处理方法和装置
    • US20100095872A1
    • 2010-04-22
    • US12517071
    • 2007-11-30
    • Tomomichi NakamuraHisashi KondoShinichiro Saito
    • Tomomichi NakamuraHisashi KondoShinichiro Saito
    • C04B7/38C04B7/44B07C99/00
    • C04B7/364B03B9/04C04B7/28C04B7/38C04B7/4423F27B7/20Y02P40/126Y02P40/145
    • To effectively utilize coal ash while reducing mercury concentration in cement kiln exhaust gas. Coal ash is received from a thermal power plant or the like; the received coal ash is separated into ash and unburned carbon; the separated ash is utilized in a cement manufacturing facility as a cement raw material; and the separated unburned carbon is utilized in the cement manufacturing facility in accordance with mercury concentration in gas exhausted from a cement kiln of the cement manufacturing facility. In case that the mercury concentration in the gas exhausted from the cement kiln of the cement manufacturing facility is high, in the coal ash, unburned carbon with high mercury content can be treated in facilities other than the cement manufacturing facility without feeding the unburned carbon to the cement manufacturing facility, or the quantity of such unburned carbon fed to the cement manufacturing facility can be adjusted. It is possible to separate mercury from the separated unburned carbon, and utilize the unburned carbon from which mercury is separated in the cement manufacturing facility as a fuel.
    • 有效利用煤灰,同时降低水泥窑废气中的汞浓度。 从火力发电厂等接收煤灰; 接收的煤灰分为灰分和未燃碳; 分离的灰分用作水泥制造设备中的水泥原料; 并且分离的未燃碳根据水泥制造设备的水泥窑排出的气体中的汞浓度在水泥制造设施中使用。 在从水泥制造设备的水泥窑排出的气体中的汞浓度高的情况下,在煤灰中,可以在水泥制造设备以外的设施中处理高含汞量的未燃烧碳,而不将未燃碳 可以调整水泥制造设备,或者供给到水泥制造设备的未燃烧碳的量。 可以将汞从分离的未燃烧碳中分离出来,并利用在水泥制造设备中分离汞的未燃烧碳作为燃料。
    • 6. 发明授权
    • Radio selective calling reception system and method
    • 无线选呼接收系统及方法
    • US6075457A
    • 2000-06-13
    • US997671
    • 1997-12-23
    • Hisashi Kondo
    • Hisashi Kondo
    • H04Q7/14H04M1/725H04M3/00H04Q7/16H04Q1/00
    • H04M1/72552H04M3/00
    • A radio selective calling reception system, which is a reception system for a radio selective calling receiver for receiving a selective call number and a message signal following the selective call number, and displaying a received message, includes a storage section, a division information storage section, a message division section, and a display section. The storage section stores received messages. The division information storage section selects a desired message from the stored messages, and stores division information for a plurality of divided message portions. The message division section divides the received message in accordance with the stored message division information. The display displays the divided message portions. A radio selective calling reception method using the above radio selective calling reception system is also disclosed.
    • 一种无线电选呼接收系统,其是用于接收选择呼叫号码的无线电选呼接收机的接收系统和选择呼叫号码之后的消息信号,并显示接收的消息,包括存储部分,分割信息存储部分 ,消息分割部分和显示部分。 存储部分存储接收到的消息。 分割信息存储部从所存储的消息中选择所需的消息,并存储多个分割消息部分的分割信息。 消息分割部根据所存储的消息分割信息来分割接收到的消息。 显示器显示分割的消息部分。 还公开了使用上述无线电选呼接收系统的无线选呼接收方法。
    • 8. 发明授权
    • Radio paging receiver capable of establishing clock synchronization even
in the absence of a preamble signal
    • 无线寻呼接收机即使在没有前置码信号的情况下也能建立时钟同步
    • US5390340A
    • 1995-02-14
    • US67626
    • 1993-05-28
    • Hisashi Kondo
    • Hisashi Kondo
    • H04B7/26H04L7/00H04L7/04H04L7/10H04W88/02H04B7/00
    • H04W88/022H04L7/0083H04L7/046
    • In a radio paging receiver operable in response to a radio signal which includes a preamble signal, a call number signal, and a display information signal to decode the call number signal and the display information signal in synchronism with a sequence of internal clock pulses produced from a clock synchronization circuit, the internal clock pulses are also produced from the clock synchronization circuit during a time interval except for the preamble signal with reference to electric field intensity and a phase or a frequency difference between the internal clock pulse sequence and a sequence of digital signal derived from the radio signal. Specifically, the internal clock pulse sequence is produced again when the electric field intensity and the phase or the frequency difference become large so as to keep synchronization of the internal clock pulse sequence during reception of the radio signal.
    • 在无线电寻呼接收机中,可响应于包括前导码信号,呼叫号码信号和显示信息信号的无线电信号进行操作,以与由内部时钟脉冲序列产生的一系列内部时钟脉冲同步地解码呼叫号码信号和显示信息信号 一个时钟同步电路,在时间同步电路之前,也可以根据电场强度和内部时钟脉冲序列与数字序列之间的相位或频率差,在除了前导信号之外的时间间隔内产生内部时钟脉冲 来自无线电信号的信号。 具体地,当电场强度和相位或频率差变大时再次产生内部时钟脉冲序列,以便在接收无线电信号期间保持内部时钟脉冲序列的同步。
    • 10. 发明授权
    • Coal ash treatment method and apparatus
    • 煤灰处理方法和装置
    • US08439202B2
    • 2013-05-14
    • US12517071
    • 2007-11-30
    • Tomomichi NakamuraHisashi KondoShinichiro Saito
    • Tomomichi NakamuraHisashi KondoShinichiro Saito
    • B03D1/14B03B5/64B03B1/00B03B5/60B07C5/00C04B14/00C04B18/06C01B31/02F23J3/00
    • C04B7/364B03B9/04C04B7/28C04B7/38C04B7/4423F27B7/20Y02P40/126Y02P40/145
    • To effectively utilize coal ash while reducing mercury concentration in cement kiln exhaust gas. Coal ash is received from a thermal power plant or the like; the received coal ash is separated into ash and unburned carbon; the separated ash is utilized in a cement manufacturing facility as a cement raw material; and the separated unburned carbon is utilized in the cement manufacturing facility in accordance with mercury concentration in gas exhausted from a cement kiln of the cement manufacturing facility. In case that the mercury concentration in the gas exhausted from the cement kiln of the cement manufacturing facility is high, in the coal ash, unburned carbon with high mercury content can be treated in facilities other than the cement manufacturing facility without feeding the unburned carbon to the cement manufacturing facility, or the quantity of such unburned carbon fed to the cement manufacturing facility can be adjusted. It is possible to separate mercury from the separated unburned carbon, and utilize the unburned carbon from which mercury is separated in the cement manufacturing facility as a fuel.
    • 有效利用煤灰,同时降低水泥窑废气中的汞浓度。 从火力发电厂等接收煤灰; 接收的煤灰分为灰分和未燃碳; 分离的灰分用作水泥制造设备中的水泥原料; 并且分离的未燃碳根据水泥制造设备的水泥窑排出的气体中的汞浓度在水泥制造设施中使用。 在从水泥制造设备的水泥窑排出的气体中的汞浓度高的情况下,在煤灰中,可以在水泥制造设备以外的设施中处理高含汞量的未燃烧碳,而不将未燃碳 可以调整水泥制造设备,或者供给到水泥制造设备的未燃烧碳的量。 可以将汞从分离的未燃烧碳中分离出来,并利用在水泥制造设备中分离汞的未燃烧碳作为燃料。