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    • 3. 发明授权
    • Intelligent transport (IT) system using wireless communication between a roadside device and an in-vehicle device
    • 使用路边设备和车载设备之间的无线通信的智能交通(IT)系统
    • US08279082B2
    • 2012-10-02
    • US12236660
    • 2008-09-24
    • Mamoru Machida
    • Mamoru Machida
    • G08G1/00
    • H04W84/20H04L5/0007H04L5/0037H04L5/143H04L27/2601H04W88/02H04W88/08
    • In order to realize road-road communications, a roadside device is provided with an MS function unit and a BS function unit that have a termination function of a signal. In a case of performing road-road communications, any of plural roadside devices can function as a BS, and others as an MS. In a wireless communication system that only enables wireless communications between MS and BS, road-road communication can be performed. In order to realize vehicle-vehicle communication, an in-vehicle device has the BS function unit and the MS function unit having a termination function of the signal and performs the same operations as the road-road communication. In road-vehicle communication, any of the roadside devices can function as the BS, and other roadside devices and in-vehicle devices are operated as the MS.
    • 为了实现道路通信,路边设备具有MS功能单元和具有信号终止功能的BS功能单元。 在进行道路通信的情况下,多路侧设备中的任何一个可以作为BS,而其他路由设备可以用作MS。 在仅实现MS与BS之间的无线通信的无线通信系统中,可以进行道路通信。 为了实现车辆车辆通信,车载装置具有BS功能单元和具有信号的终止功能的MS功能单元,并且执行与道路交通通信相同的操作。 在道路车辆通信中,路边设备中的任何一个可以作为BS起作用,并且其他路侧设备和车载设备作为MS来操作。
    • 5. 发明申请
    • Electronic apparatus
    • 电子仪器
    • US20070260799A1
    • 2007-11-08
    • US11476592
    • 2006-06-29
    • Mamoru Machida
    • Mamoru Machida
    • G06F13/14
    • G06F11/1625G06F11/1641G06F11/2273H04L1/22H04L1/24
    • An electronic apparatus which is capable of detecting faults that cannot be detected with a fixed signal pattern and which also permits fault detection to be performed even during the operation thereof. Signal processor circuits perform identical signal processing, and a signal router causes the signal being input to an operating signal processor circuit which is performing the signal processing among the signal processor circuits, to be input to an idle signal processor circuit which is not performing the signal processing. A fault detector compares an operating output signal output from the operating signal processor circuit with an idle output signal output from the idle signal processor circuit to detect a fault.
    • 一种电子设备,其能够检测不能用固定信号图案检测的故障,并且即使在其操作期间也允许执行故障检测。 信号处理器电路执行相同的信号处理,并且信号路由器将信号输入到在信号处理器电路之间执行信号处理的操作信号处理器电路输入到不执行信号的空闲信号处理器电路 处理。 故障检测器将来自操作信号处理器电路的操作输出信号与从空闲信号处理器电路输出的空闲输出信号进行比较,以检测故障。
    • 6. 发明授权
    • Wireless communication system
    • 无线通信系统
    • US08937904B2
    • 2015-01-20
    • US13277772
    • 2011-10-20
    • Mamoru Machida
    • Mamoru Machida
    • H04W4/00H04W52/02H04W88/08
    • H04W52/0232H04W88/085Y02D70/164
    • A wireless communication system includes: a plurality of mobile terminals; a plurality of transceivers, each of the transceivers performing wireless communication with a mobile terminal; a plurality of baseband processors which modulates data to be transmitted to one of the transceivers and demodulates data received from one of the transceivers; a switch which switches the connection of the transceivers and the baseband processors; and a controller which calculates an operation rate of the transceivers and the baseband processors, respectively, continues or stops a power supply for driving the transceivers and the baseband processors in accordance with a calculation result of the operation rate, and controls the switch to reconnect the transceivers coupled to one of the baseband processor of which the power supply has been stopped to another baseband processor of which the power supply is continued.
    • 无线通信系统包括:多个移动终端; 多个收发机,每个收发机执行与移动终端的无线通信; 多个基带处理器,其对要发送到所述收发器之一的数据进行调制,并解调从所述收发器之一接收的数据; 用于切换收发器和基带处理器的连接的开关; 并且分别计算收发器和基带处理器的运行速率的控制器根据运算速率的计算结果来继续或停止用于驱动收发器和基带处理器的电源,并且控制开关重新连接 耦合到其中电源已经停止的基带处理器之一的收发器到继续供电的另一个基带处理器。
    • 8. 发明授权
    • Fluid diverging system
    • 流体分流系统
    • US5050631A
    • 1991-09-24
    • US637963
    • 1991-01-09
    • Mitsuo KonnoMasaki KawadaMamoru MachidaHisashi Noro
    • Mitsuo KonnoMasaki KawadaMamoru MachidaHisashi Noro
    • F16L41/03
    • F16L41/03Y10T137/1135Y10T137/5196Y10T137/5283
    • A fluid diverging system provides a passageway for supplying a fluid from a single supply source to a plurality of sections requiring the use of the fluid and for discharging the fluid from these sections to a single discharge portion. The fluid diverging system includes a plurality of fluid diverging blocks separably connected to one another longitudinally in a row. Each of the blocks has a through-hole longitudinally passed therethrough, and a communication passage communicating with the through-hole and capable of being connected to external fluid transfer means. Joint means connecting these blocks enable a fluid-tight communication of these blocks with one another. This makes it possible to use the fluid diverging system in an optical form only by increasing or decreasing the number of the fluid diverging blocks in accordance with an increase or decrease in number of the section requiring the use of the fluid.
    • 流体分配系统提供用于将流体从单个供应源供应到需要使用流体并将流体从这些部分排出到单个排放部分的多个部分的通道。 流体发散系统包括多个在一排中纵向可分离地连接的流体发散块。 每个块具有纵向通过的通孔,以及与通孔连通并能够连接到外部流体传送装置的连通通道。 连接这些块的连接装置使得这些块之间能够彼此流体密封地通信。 这使得可以仅通过根据需要使用流体的部分的数量的增加或减少来增加或减少流体发散块的数量来使用光学形式的流体分配系统。
    • 9. 发明授权
    • Communication system including a base station and terminal devices each using an up-link line allocated by the base station
    • 通信系统包括基站和终端设备,每个终端设备使用由基站分配的上行线路
    • US08169997B2
    • 2012-05-01
    • US11603118
    • 2006-11-22
    • Mamoru Machida
    • Mamoru Machida
    • H04J3/06
    • H04W76/11H04W48/08H04W72/0406H04W88/08
    • A communication system allocates a discrete line between a base station and each terminal device that allows discrete communication in a time span equivalent to several frames. The communication system includes a base station that has a processing function unit processing a physical layer using a given data format, and terminal devices each using an up-link line allocated by the base station. In the system, the base station and each terminal device communicates with each other by the orthogonal frequency division multiplexing method. The base station sends out a preamble signal cyclically, and has a means that sends out a vacant discrete connection identifier for identifying a vacant up-link line for a terminal device to send data to the base station when the base station receives an up-link line request from the terminal device.
    • 通信系统在基站和每个终端设备之间分配离散线路,其允许在等于几个帧的时间间隔中的离散通信。 通信系统包括具有使用给定数据格式处理物理层的处理功能单元的基站和各自使用由基站分配的上行链路线的终端设备。 在该系统中,基站和各终端装置通过正交频分复用方式进行通信。 基站周期性地发送前置信号,并且具有发送空闲的离散连接标识符的装置,用于识别终端设备的空闲上行链路,以便当基站接收到上行链路时,向基站发送数据 来自终端设备的线路请求。
    • 10. 发明申请
    • OFDMA communication apparatus
    • OFDMA通信装置
    • US20100260163A1
    • 2010-10-14
    • US11525092
    • 2006-09-22
    • Mamoru Machida
    • Mamoru Machida
    • H04B7/208
    • H04L27/2605H04L5/0007H04L5/0048H04L5/0087H04L5/0096
    • An OFDMA communication apparatus is disclosed that operates under media access control based on an OFDMA standard and modulates transmission data into an OFDMA signal. The OFDMA communication apparatus includes a preamble generating unit that generates plural types of preamble patterns; a broadcast generating unit that generates broadcast data; a burst generating unit that generates a data burst according to the transmission data; a data multiplexing unit that generates multiplexed data by multiplexing the data generated by the preamble generating unit, the broadcast generating unit, and the burst generating unit on a predetermined physical layer format; an OFDM unit that performs orthogonal frequency division multiplexing on the multiplexed data using plural sub carriers; a carrier assigning unit that assigns the preamble patterns to at least four sub carrier groups; and a symbol assigning unit that divides the preamble patterns into plural sub pattern element groups that are time-multiplexed on the predetermined physical layer format.
    • 公开了一种OFDMA通信装置,其基于OFDMA标准在媒体接入控制下进行操作,并将发送数据调制为OFDMA信号。 OFDMA通信装置包括:产生多种前同步码模式的前同步码生成部; 广播产生单元,生成广播数据; 突发生成单元,其根据所述发送数据生成数据突发; 数据多路复用单元,其以预定的物理层格式复用由前导码生成单元,广播生成单元和突发生成单元生成的数据,生成复用数据; OFDM单元,其使用多个子载波对复用的数据进行正交频分复用; 载波分配单元,其将前导码模式分配给至少四个子载波组; 以及符号分配单元,其将前导码模式划分为在预定物理层格式上被时分复用的多个子模式元素组。