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    • 64. 发明授权
    • Method and apparatus for control battery and specification determining method of battery
    • 电池控制方法及装置及电池规格确定方法
    • US08831790B2
    • 2014-09-09
    • US13171685
    • 2011-06-29
    • Yasutaka KimuraMasahiro WatanabeToshiyuki Sawa
    • Yasutaka KimuraMasahiro WatanabeToshiyuki Sawa
    • G05D3/12H02J3/32H02J13/00H02J3/46
    • H02J3/32H02J3/46H02J13/0006Y02E10/563Y02E10/566Y02E10/763Y02E10/766Y02E60/722Y02E70/30Y04S10/123Y04S10/14
    • A battery control apparatus of this invention is provided which comprises: a battery installed on a feeder of a utility distribution system; batteries installed between pole-mounted transformers and branch points of the distribution lines; a communication network to transmit measurement data measured by meters; a battery control quantity calculation unit to determine battery control quantities from the measurement data acquired from the communication network; a load data collection unit to collect load data representing a combination of power consumption by a plurality of loads and generated power of distributed power generations; a frequency conversion unit to perform a frequency analysis on the load data; an intermediate-cycle component extraction unit to extract intermediate-cycle components; a battery control quantity calculation unit to determine battery control quantities from the extracted intermediate-cycle components; and a battery control command transmission unit to transmit the calculated control quantities to the batteries.
    • 本发明的电池控制装置包括:电池,其安装在公用配电系统的馈电器上; 安装在柱式变压器和配电线分支点之间的电池; 用于传输由米测量的测量数据的通信网络; 电池控制量计算单元,用于从通信网络获取的测量数据中确定电池控制量; 负载数据收集单元,用于收集代表多个负载的功率消耗和分布式发电的发电功率的组合的负载数据; 频率转换单元,对负载数据进行频率分析; 中间循环分量提取单元,用于提取中间循环分量; 电池控制量计算单元,用于根据所提取的中间循环分量来确定电池控制量; 以及电池控制指令发送单元,用于将计算出的控制量发送到电池。
    • 66. 发明授权
    • Scanning probe microscope and sample observing method using the same
    • 扫描探针显微镜及使用其的样品观察方法
    • US08695110B2
    • 2014-04-08
    • US13586754
    • 2012-08-15
    • Toshihiko NakataMasahiro WatanabeTakashi InoueKishio HidakaMotoyuki Hirooka
    • Toshihiko NakataMasahiro WatanabeTakashi InoueKishio HidakaMotoyuki Hirooka
    • G01Q70/00G01Q70/16G01N13/00
    • G01Q60/18G01Q60/22
    • In a near-field scanning microscope using an aperture probe, the upper limit of the aperture formation is at most several ten nm in practice. In a near-field scanning microscope using a scatter probe, the resolution ability is limited to at most several ten nm because of the external illuminating light serving as background noise. Moreover, measurement reproducibility is seriously lowered by a damage or abrasion of a probe. Optical data and unevenness data of the surface of a sample can be measured at a nm-order resolution ability and a high reproducibility while damaging neither the probe nor the sample by fabricating a plasmon-enhanced near-field probe having a nm-order optical resolution ability by combining a nm-order cylindrical structure with nm-order microparticles and repeatedly moving the probe toward the sample and away therefrom at a low contact force at individual measurement points on the sample.
    • 在使用孔径探针的近场扫描显微镜中,实际上孔径形成的上限为至多几十nm。 在使用散射探针的近场扫描显微镜中,由于外部照明光作为背景噪声,分辨能力被限制在至多几十nm。 此外,通过探针的损伤或磨损,测量再现性被严重降低。 可以以nm级分辨能力和高再现性测量样品表面的光学数据和不均匀性数据,同时通过制造具有nm级光学分辨率的等离子体增强近场探针而不损害探针和样品 通过将nm级圆柱形结构与nm级微粒组合,并在样品上的各个测量点处以低接触力将探针重复地移动到样品并从中离开它们的能力。
    • 70. 发明申请
    • MOBILE TERMINAL, MOBILE COMMUNICATION CONTROL METHOD, AND MOBILE COMMUNICATION SYSTEM
    • 移动终端,移动通信控制方法和移动通信系统
    • US20130051263A1
    • 2013-02-28
    • US13589348
    • 2012-08-20
    • Masahiro Watanabe
    • Masahiro Watanabe
    • H04W24/00H04W36/08
    • H04W52/0245H04W36/30H04W52/0241H04W72/0453H04W72/085Y02D70/00Y02D70/142Y02D70/144
    • A mobile terminal includes a first transceiver which communicates a first signal in a first frequency band, a second transceiver which communicates a second signal in a second frequency band, a measuring section which measures a reception quality of the first signal, and a reception quality of the second signal, a storage which stores one or more index values based on the reception quality of the first signal which is obtained when the reception quality of the second signal becomes less than or equal to a threshold value, and a controller which puts the second transceiver into a sleep mode when the reception quality of the second signal becomes less than or equal to a threshold value, and cancels the sleep mode when a subsequently measured reception quality of a first signal becomes equal to or greater than the one or more index values.
    • 移动终端包括:传送第一频带中的第一信号的第一收发信机,在第二频带中通信第二信号的第二收发信机,测量第一信号的接收质量的测量部分, 第二信号,存储器,其基于当第二信号的接收质量变得小于或等于阈值时获得的第一信号的接收质量来存储一个或多个索引值;以及控制器,其将第二信号 当第二信号的接收质量变得小于或等于阈值时,收发机进入休眠模式,并且当随后测量的第一信号的接收质量变为等于或大于一个或多个指标值时,取消睡眠模式 。