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    • 1. 发明授权
    • Radio communications system, radio communications method, radio relay, and radio terminal
    • 无线电通信系统,无线电通信方法,无线电中继和无线电终端
    • US07668142B2
    • 2010-02-23
    • US10176623
    • 2002-06-24
    • Takayuki IshiguroOsamu NakamuraShinji Uebayashi
    • Takayuki IshiguroOsamu NakamuraShinji Uebayashi
    • H04B7/216
    • H04L1/0006
    • A radio terminal (10) and a radio relay (20, 30, 40) perform radio communications therebetween by a radio communications system else than a TDMA system, an interference measurer (13a) measures a degree of interference of each of radio slots constituting a radio channel employed in the radio communications system, a decision maker (13b, 13c) makes a decision, depending on a measurement result of the degree of interference, whether or not the radio communications by the radio communications system is able to be continued, and a switcher (42) switches, as the decision is made of the radio communications by the radio communications system to be unable to be continued, the radio communications system to a radio communications system of the TDMA system.
    • 无线电终端(10)和无线电中继器(20,30,40)通过无线电通信系统与TDMA系统进行无线电通信,干扰测量器(13a)测量构成一个无线电终端的每个无线电时隙的干扰程度 在无线电通信系统中使用的无线电信道,决策者(13b,13c)根据干扰程度的测量结果做出是否能够继续无线电通信系统的无线电通信的决定,以及 当无线电通信系统无线电通信决定为无法继续时,切换器(42)将无线电通信系统切换到TDMA系统的无线电通信系统。
    • 2. 发明授权
    • Apparatus for measuring absorbed power
    • 用于测量吸收功率的装置
    • US07615188B2
    • 2009-11-10
    • US11392570
    • 2006-03-30
    • Takahiro IyamaYoshiaki TarusawaShinji UebayashiToshio Nojima
    • Takahiro IyamaYoshiaki TarusawaShinji UebayashiToshio Nojima
    • C12Q1/68H04B1/10G01N27/00
    • G01R29/08
    • In an apparatus for measuring absorbed power including an electromagnetic field probe 1 fixedly mounted within a head simulation phantom 2 which simulates the configuration and the electromagnetic characteristics of a head of a human body, and wherein the strength of an electric field or a magnetic field of a radio wave externally irradiated upon the head simulation phantom 2 is measured by the electromagnetic field probe 1, and the power of the radio wave absorbed by the head is estimated on the basis of measured values, the head simulation phantom 2 comprises a solid dielectric 10′ which simulates the configuration and the electromagnetic characteristics of a head of a human body or a liquid dielectric 10 which simulates the electromagnetic characteristics of a head of a human body and which is filled in an enclosed vessel 10 which simulates the configuration of a head of a human body. The volume of the solid dielectric 10′ or the volume of the enclosed vessel 11 is equal to or less than 5×105 mm3.
    • 在一种用于测量吸收功率的装置中,包括固定地安装在模拟人体头部的构型和电磁特性的头模拟体模2内的电磁场探针1,并且其中电场或磁场的强度 通过电磁场探头1测量外部照射到头部模拟体模2上的无线电波,并且基于测量值来估计头部吸收的无线电波的功率,头部模拟模型2包括固体电介质10 其模拟人体头部或液体电介质10的结构和电磁特性,其模拟人体头部的电磁特性,并且填充在封闭容器10中,该容器10模拟头部的头部的构造 一个人体 固体电介质10'的体积或封闭容器11的体积等于或小于5×10 5 mm 3。
    • 3. 发明授权
    • Measurement system of specific absorption rate
    • 比吸收率测量系统
    • US07583089B2
    • 2009-09-01
    • US11169646
    • 2005-06-30
    • Teruo OnishiKatsuki KiminamiShinji Uebayashi
    • Teruo OnishiKatsuki KiminamiShinji Uebayashi
    • G01R27/04
    • G01R29/0857
    • A specific absorption rate measuring apparatus including a probe configured to measure, in a two-dimensional plane, the amplitude and the phase of an electric or magnetic field generated in a phantom of which electrical properties similar to a human body tissues; an electric and/or magnetic field estimation unit configured to estimate a three-dimensional electric field distribution to be produced from a wave source defined by the two-dimensional electric and magnetic fields at a measuring point, based on the measurement results of the probe; and a specific absorption rate estimation unit configured to estimate a three-dimensional distribution of specific absorption rate based on the estimation result of the electric field estimation unit.
    • 一种具体的吸收率测量装置,包括被配置为在二维平面中测量以与人体组织类似的电性质的体模中产生的电场或磁场的振幅和相位的探针; 电场和/或磁场估计单元,其被配置为基于所述探针的测量结果来估计在由测量点由所述二维电场和磁场限定的波源产生的三维电场分布; 以及比吸收率估计单元,其被配置为基于电场估计单元的估计结果来估计特定吸收率的三维分布。
    • 5. 发明授权
    • Absorption power measuring device
    • 吸收功率测量装置
    • US07186377B2
    • 2007-03-06
    • US10398205
    • 2002-08-08
    • Takahiro IyamaYoshiaki TarusawaShinji UebayashiToshio Nojima
    • Takahiro IyamaYoshiaki TarusawaShinji UebayashiToshio Nojima
    • C12Q1/68G01N15/06G01N33/00G01N33/48G01N25/18
    • G01R29/08
    • In an apparatus for measuring absorbed power including an electromagnetic field probe 1 fixedly mounted within a head simulation phantom 2 which simulates the configuration and the electromagnetic characteristics of a head of a human body, and wherein the strength of an electric field or a magnetic field of a radio wave externally irradiated upon the head simulation phantom 2 is measured by the electromagnetic field probe 1, and the power of the radio wave absorbed by the head is estimated on the basis of measured values, the head simulation phantom 2 comprises a solid dielectric 10′ which simulates the configuration and the electromagnetic characteristics of a head of a human body or a liquid dielectric 10 which simulates the electromagnetic characteristics of a head of a human body and which is filled in an enclosed vessel 10 which simulates the configuration of a head of a human body. The volume of the solid dielectric 10′ or the volume of the enclosed vessel 11 is equal to or less than 5×105 mm3.
    • 在一种用于测量吸收功率的装置中,包括固定地安装在模拟人体头部的构型和电磁特性的头模拟体模2内的电磁场探针1,并且其中电场或磁场的强度 通过电磁场探头1测量外部照射到头部模拟体模2上的无线电波,并且基于测量值来估计头部吸收的无线电波的功率,头部模拟模型2包括固体电介质10 其模拟人体头部或液体电介质10的结构和电磁特性,其模拟人体头部的电磁特性,并且填充在封闭容器10中,该容器10模拟头部的头部的构型 一个人体 固体电介质10'的体积或封闭容器11的体积等于或小于5×10 5 mm 3。
    • 8. 发明申请
    • Specific absorption rate measuring system, and a method thereof
    • 比吸收率测定系统及其方法
    • US20060114003A1
    • 2006-06-01
    • US11263946
    • 2005-11-02
    • Teruo OnishiRyo YamaguchiShinji UebayashiTadao NagatsumaNaofumi ShimizuHiroyoshi Togo
    • Teruo OnishiRyo YamaguchiShinji UebayashiTadao NagatsumaNaofumi ShimizuHiroyoshi Togo
    • G01R27/04
    • G01R29/0885
    • A specific absorption rate measuring system, a method thereof, and a biological tissue equivalent phantom unit are disclosed. The biological tissue equivalent phantom unit to be used by the specific absorption rate measuring system for evaluating absorption of electromagnetic wave energy includes a biological tissue equivalent phantom for absorbing an electromagnetic wave; two or more electro-optical crystals that are arranged at two or more measurement points in the biological tissue equivalent phantom, the electro-optical crystals having a dielectric constant that is approximately equal to that of the biological tissue equivalent phantom; and two or more optical fibers laid in the biological tissue equivalent phantom for optically connecting each of the electro-optical crystals to an external destination. The specific absorption rate measuring system for evaluating absorption of the electromagnetic wave energy using the biological tissue equivalent phantom unit includes a luminous source for irradiating a light; a polarization regulator for adjusting a polarization state of the light that is output by the luminous source; an optical-path switcher for providing the polarization-adjusted light to each of the electro-optical crystals one by one; and a specific absorption rate measuring unit for detecting the light reflected from the electro-optical crystal, and for measuring an absorption rate.
    • 公开了一种比吸收率测量系统,其方法和生物组织等效体模单元。 用于评估电磁波能量吸收的比吸收率测定系统使用的生物组织等效体模包括吸收电磁波的生物组织等效体模; 布置在生物组织等效体模中的两个或更多个测量点处的两个或更多个电光晶体,所述电光晶体的介电​​常数近似等于生物组织等效体模; 以及放置在生物组织等效体模中的两根或更多根光纤,用于将每个电光晶体光学连接到外部目的地。 用于使用生物组织等效体模单元评价电磁波能量的吸收的比吸收率测定系统包括用于照射光的光源; 用于调节由所述发光源输出的光的偏振状态的偏振调节器; 光路切换器,用于逐个向每个电光晶体提供偏振调节的光; 以及用于检测从电光晶体反射的光并用于测量吸收率的比吸收率测量单元。
    • 9. 发明授权
    • Mobile station position estimation scheme for cellular mobile communication system
    • 蜂窝移动通信系统的移动台位置估计方案
    • US06181944B2
    • 2001-01-30
    • US09041764
    • 1998-03-13
    • Shinji UebayashiKouji OhnoSeizo Onoe
    • Shinji UebayashiKouji OhnoSeizo Onoe
    • H04Q720
    • H04W64/00G01S5/14
    • A mobile station position estimation scheme for a cellular mobile communication system which is capable of estimating a position of a mobile station in a simple manner even in the general cellular mobile communication systems in which base stations are not synchronized. According to this mobile station position estimation scheme, a first signal sequence and a second signal sequence which are uniquely predetermined for the mobile station are exchanged between the mobile station and the base station, and then a position of the mobile station is estimated at one station among the base station and the mobile station, by obtaining a phase difference between the first signal sequence and the second signal sequence and calculating an estimated distance between the base station and the mobile station according to the phase difference.
    • 一种用于蜂窝移动通信系统的移动台位置估计方案,其能够以简单的方式估计移动站的位置,即使在基站不同步的一般蜂窝移动通信系统中。 根据该移动台位置估计方式,在移动台与基站之间交换为移动台唯一预定的第一信号序列和第二信号序列,然后在一个站点估计移动站的位置 在基站和移动台之间,通过获得第一信号序列与第二信号序列之间的相位差,并根据相位差计算基站与移动台之间的估计距离。
    • 10. 发明申请
    • SIGNAL TRANSMISSION METHOD AND BASE STATION IN MOBILE COMMUNICATION
    • 信号传输方法和移动通信中的基站
    • US20090161539A1
    • 2009-06-25
    • US12333090
    • 2008-12-11
    • Shinji UebayashiSeizo OnoeMinami IshiiTakehiro Nakamura
    • Shinji UebayashiSeizo OnoeMinami IshiiTakehiro Nakamura
    • H04L12/26H04B7/216H04W88/08
    • H04W28/22H04W24/00H04W28/18H04W72/00H04W76/10H04W76/18H04W84/042
    • A signal transmission method checks, when detecting an occurrence of a communication request, whether the communication request is a high speed communication (step S302). In the case of the high speed communication, it checks whether the number of current high speed communications (m) plus one is greater than the upper limit (mmax) of the high speed communication (step S312). If greater, it cancels the request as a call loss (S316), and sets to a variable a the ratio (h) of the rate of the high speed communication to that of a low speed communication. If the communication request is the low speed communication, it sets one to the variable a (step S304). It compares n plus a with nmax (step S306), where n is the total number of all the current communications, a is the value associated with the communication request, and nmax is the upper limit of the number of communications acceptable in a bandwidth, all of which are expressed in terms of the number of the low speed communications. If n plus a is greater than nmax, the communication request is canceled as a call loss (S316). Otherwise, the total number of the current high speed communications (m) and the total number of all the current communications (n) expressed in terms of the number of the low speed communications are updated, and a channel is assigned to the communication request (step S310).
    • 当检测到通信请求的发生时,信号传输方法检查通信请求是否为高速通信(步骤S302)。 在高速通信的情况下,检查当前高速通信(m)加1的数量是否大于高速通信的上限(mmax)(步骤S312)。 如果较大,则将该请求作为呼叫损失取消(S316),并将高速通信的速率与低速通信的比率(h)设定为变量。 如果通信请求是低速通信,则将其设置为变量a(步骤S304)。 它将n加a与nmax进行比较(步骤S306),其中n是当前通信的总数,a是与通信请求相关联的值,nmax是带宽中可接受的通信数量的上限, 所有这些都以低速通信的数量表示。 如果n加a大于nmax,则通信请求作为呼叫丢失被取消(S316)。 否则,更新当前高速通信的总数(m)和以低速通信的数量表示的所有当前通信的总数(n),并且将通道分配给通信请求 步骤S310)。