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    • 93. 发明申请
    • FIBER COMMUNICATION SYSTEM, FIBER AMPLIFIER, AND METHOD FOR FABRICATING FIBER AMPLIFIER
    • 光纤通信系统,光纤放大器以及制造光纤放大器的方法
    • US20090190934A1
    • 2009-07-30
    • US12417947
    • 2009-04-03
    • Wendou ZHANGDongming LiHong Liu
    • Wendou ZHANGDongming LiHong Liu
    • H04B10/00H04B10/12
    • H01S3/06754G02B6/12
    • The present invention discloses a fiber amplifier, a fabricating method thereof, and a fiber communication system. The fiber amplifier includes at least a pump laser, at least a gain medium and at least an integrated optical component. The integrated optical component includes multiple optical input/output ports, and the optical input/output ports are connected to the pump laser or gain medium directly or indirectly. The present invention may better address problems of unstable performance and difficulty in reducing the size of components in the prior art where fiber amplifiers are formed by a number of discrete components with many fiber fusion splices. In addition, the present invention may reduce the production complexity and costs of fiber amplifiers, and improve the productivity of fiber amplifiers.
    • 本发明公开了一种光纤放大器及其制造方法以及光纤通信系统。 光纤放大器至少包括泵浦激光器,至少增益介质和至少一个集成的光学部件。 集成光学部件包括多个光输入/输出端口,光输入/输出端口直接或间接连接到泵浦激光器或增益介质。 本发明可以更好地解决现有技术中不稳定性能和难以减小组件尺寸的问题,其中光纤放大器由具有许多光纤熔接的许多分立组件形成。 此外,本发明可以降低光纤放大器的生产复杂度和成本,并且提高光纤放大器的生产率。
    • 94. 发明申请
    • BIO-ELECTROCHEMICALLY ASSISTED MICROBIAL REACTOR THAT GENERATES HYDROGEN GAS AND METHODS OF GENERATING HYDROGEN GAS
    • 产生氢气的生物电化学微生物反应器和产生氢气的方法
    • US20090159455A1
    • 2009-06-25
    • US12360708
    • 2009-01-27
    • Bruce LoganStephen GrotThomas E. MalloukHong Liu
    • Bruce LoganStephen GrotThomas E. MalloukHong Liu
    • C25B1/02
    • C25B9/00C02F3/005C02F2001/46133C02F2001/46161C02F2201/46115C25B1/02H01M8/16H01M8/186Y02E60/527Y02E60/528Y02W10/37
    • Systems and processes for producing hydrogen using bacteria are described. One detailed process for producing hydrogen uses a system for producing hydrogen as described herein, the system including a reactor. Anodophilic bacteria are disposed within the interior of the reactor and an organic material oxidizable by an oxidizing activity of the anodophilic bacteria is introduced and incubated under oxidizing reactions conditions such that electrons are produced and transferred to the anode. A power source is activated to increase a potential between the anode and the cathode, such that electrons and protons combine to produce hydrogen gas. In one system for producing hydrogen is provided which includes a reaction chamber having a wall defining an interior of the reactor and an exterior of the reaction chamber. An anode is provided which is at least partially contained within the interior of the reaction chamber and a cathode is also provided which is at least partially contained within the interior of the reaction chamber. The cathode is spaced apart at a distance in the range between 0.1-100 centimeters, inclusive, from the anode. A conductive conduit for electrons is provided which is in electrical communication with the anode and the cathode and a power source for enhancing an electrical potential between the anode and cathode is included which is in electrical communication at least with the cathode. A first channel defining a passage from the exterior of the reaction chamber to the interior of the reaction chamber is also included.
    • 描述了使用细菌产生氢的系统和方法。 用于生产氢的一个详细的方法使用如本文所述的用于生产氢的系统,该系统包括反应器。 将嗜盐细菌置于反应器的内部,并引入可通过阳极细菌的氧化活性氧化的有机物质,并在氧化反应条件下孵育,使得产生电子并转移至阳极。 激活电源以增加阳极和阴极之间的电位,使得电子和质子组合以产生氢气。 提供了一种用于生产氢的系统,其包括具有限定反应器内部的壁和反应室的外部的反应室。 提供了至少部分地包含在反应室内部的阳极,还提供了至少部分地包含在反应室内部的阴极。 阴极与阳极之间的距离在0.1-100厘米的范围内间隔开。 提供用于电子的导电导管,其与阳极和阴极电连通,并且包括用于增强阳极和阴极之间的电位的电源,其至少与阴极电连通。 还包括限定从反应室的外部到反应室内部的通道的第一通道。
    • 95. 发明授权
    • Symmetrical data signal processing
    • 对称数据信号处理
    • US07551679B2
    • 2009-06-23
    • US11347747
    • 2006-02-03
    • Hong LiuRaul A. CasasHaosong Fu
    • Hong LiuRaul A. CasasHaosong Fu
    • H04K1/10
    • H04L25/03171H04L25/0212H04L27/04H04L2025/03382H04L2025/03522
    • In a digital communications receiver configured to receive, via a communications channel, a received first signal representing a sequence of symbols, each symbol being encoded to be representative of data bits, a method of processing the received signal includes adjusting a magnitude, filtering, and applying cyclic prefix restoration, to the received signal to produce a second signal, converting the second signal from time domain to frequency domain to produce a frequency domain signal, and determining a first quantity of values representing a first portion of the symbols by evaluating a relationship of channel values representing characteristics of the communications channel and a second quantity of values representing a portion of the frequency domain signal, the first quantity being smaller than the second quantity.
    • 在被配置为经由通信信道接收表示符号序列的每个符号被编码为表示数据比特的数字通信接收机中,处理接收信号的方法包括调整幅度,滤波和 对所接收的信号应用循环前缀恢复以产生第二信号,将所述第二信号从时域转换到频域以产生频域信号,以及通过评估所述符号的关系来确定表示所述符号的第一部分的第一数量的值 表示所述通信信道的特性的信道值和表示所述频域信号的一部分的第二数量值,所述第一数量小于所述第二数量。
    • 97. 发明授权
    • Bio-electrochemically assisted microbial reactor that generates hydrogen gas and methods of generating hydrogen gas
    • 产生氢气的生物电化学辅助微生物反应器和产生氢气的方法
    • US07491453B2
    • 2009-02-17
    • US11180454
    • 2005-07-13
    • Bruce LoganStephen GrotThomas E. MalloukHong Liu
    • Bruce LoganStephen GrotThomas E. MalloukHong Liu
    • H01M8/06H01M8/16
    • C25B9/00C02F3/005C02F2001/46133C02F2001/46161C02F2201/46115C25B1/02H01M8/16H01M8/186Y02E60/527Y02E60/528Y02W10/37
    • Systems and processes for producing hydrogen using bacteria are described. One detailed process for producing hydrogen uses a system for producing hydrogen as described herein, the system including a reactor. Anodophilic bacteria are disposed within the interior of the reactor and an organic material oxidizable by an oxidizing activity of the anodophilic bacteria is introduced and incubated under oxidizing reactions conditions such that electrons are produced and transferred to the anode. A power source is activated to increase a potential between the anode and the cathode, such that electrons and protons combine to produce hydrogen gas. One system for producing hydrogen includes a reaction chamber having a wall defining an interior of the reactor and an exterior of the reaction chamber. An anode is provided which is at least partially contained within the interior of the reaction chamber and a cathode is also provided which is at least partially contained within the interior of the reaction chamber. The cathode is spaced apart at a distance in the range between 0.1-100 centimeters, inclusive, from the anode. A conductive conduit for electrons is provided which is in electrical communication with the anode and the cathode and a power source for enhancing an electrical potential between the anode and cathode is included which is in electrical communication at least with the cathode. A first channel defining a passage from the exterior of the reaction chamber to the interior of the reaction chamber is also included.
    • 描述了使用细菌产生氢的系统和方法。 用于生产氢的一个详细的方法使用如本文所述的用于生产氢的系统,该系统包括反应器。 将嗜盐细菌置于反应器的内部,并引入可通过阳极细菌的氧化活性氧化的有机物质,并在氧化反应条件下孵育,使得产生电子并转移至阳极。 激活电源以增加阳极和阴极之间的电位,使得电子和质子组合以产生氢气。 一种用于生产氢的系统包括具有限定反应器内部的壁和反应室的外部的反应室。 提供了至少部分地包含在反应室内部的阳极,还提供了至少部分地包含在反应室内部的阴极。 阴极与阳极之间的距离在0.1-100厘米的范围内间隔开。 提供用于电子的导电导管,其与阳极和阴极电连通,并且包括用于增强阳极和阴极之间的电位的电源,其至少与阴极电连通。 还包括限定从反应室的外部到反应室内部的通道的第一通道。