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    • 2. 发明专利
    • Method for implementing lease business by integrating medical space, medical equipment and human resources
    • 通过整合医疗空间,医疗设备和人力资源实施租赁业务的方法
    • JP2005339489A
    • 2005-12-08
    • JP2004187082
    • 2004-05-28
    • Eiji BabaKonishi SueoKoyanagi Katsushiro小柳 克四郎小西 末雄英治 馬場
    • BABA EIJI
    • G06Q30/06G06Q50/00G06Q50/10G06Q50/22G06F17/60
    • PROBLEM TO BE SOLVED: To provide a method for a business model which reduces at least a part of a workload for a doctor in general practice who wants to concentrate in a practicing service, by sharing and utilizing an examination instrument, a medical apparatus, a computer system, and an electronic patient chart system required for each doctor, among a plurality of doctors in general practice, and also by integrating the management of recruiting and employing human resources of a nurse, a medical administrator, and a clerk by using the computer system. SOLUTION: The method for implementing a lease business by integrating a medical space, medical equipment and human resources, comprises steps of; inviting a plurality of the doctors in general practice; constituting a system that comprises a medical space, a system to use shared medical facilities, a system for sharing human resources, operating software, and a computer system; and supporting the doctors by providing all services except the medical services practiced by the doctors. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种商业模式的方法,其减少了一般实践中要集中在执业服务中的医生的工作量的至少一部分,通过共享和利用检查仪器,医疗 在一般实践中的多名医生之中,还通过整合护士,医疗管理员和文员的招聘和雇用人力资源的管理来综合管理每个医生所需的装置,计算机系统和电子病人图表系统 使用电脑系统。 解决方案:通过整合医疗空间,医疗设备和人力资源实施租赁业务的方法包括以下步骤: 邀请多位医生进行一般实践; 构成包括医疗空间的系统,使用共享医疗设施的系统,用于共享人力资源的系统,操作软件和计算机系统; 并提供除医生实行的医疗服务以外的所有服务,为医生提供支持。 版权所有(C)2006,JPO&NCIPI
    • 3. 发明申请
    • SIGNAL PROCESSING DEVICE
    • 信号处理装置
    • US20100128897A1
    • 2010-05-27
    • US12593928
    • 2008-03-26
    • Hiroshi SaruwatariYoshimitsu MoriHiromitsu MoriEiji Baba
    • Hiroshi SaruwatariYoshimitsu MoriHiromitsu MoriEiji Baba
    • H04B15/00
    • G10L21/028
    • A separation signal generation unit generates a plurality of separation signals which are independent from one another from the mixed signals for one frame which are converted into those in a frequency region. A mask processing unit judges a noise condition of a first separation signal for each frequency bin on the basis of the first separation signal and second separation signals. The mask processing unit further removes a first noise component obtained on the basis of a judgment result on the noise condition from the first separation signal. A noise amount measuring unit measures the amount of noise in the first separation signal. A noise signal selection unit selects a noise signal for each frequency bin on the basis of the amount of noise measured by the noise amount measuring unit. A noise removing unit removes a second noise component from a noise removal signal inputted from the mask processing unit. The noise removing unit outputs the noise removal signal obtained by removing the second noise component as a target signal.
    • 分离信号生成单元从一帧的混合信号生成彼此独立的多个分离信号,该混合信号被转换成频率区域的混合信号。 掩模处理单元基于第一分离信号和第二分离信号来判断每个频率仓的第一分离信号的噪声条件。 掩模处理单元还基于来自第一分离信号的噪声条件的判定结果,去除获得的第一噪声分量。 噪声量测量单元测量第一分离信号中的噪声量。 噪声信号选择单元基于由噪声量测量单元测量的噪声量来选择每个频率仓的噪声信号。 噪声去除单元从从掩模处理单元输入的噪声去除信号中去除第二噪声分量。 噪声去除单元输出通过去除第二噪声分量而获得的噪声去除信号作为目标信号。
    • 4. 发明授权
    • Processor
    • 处理器
    • US4737932A
    • 1988-04-12
    • US741141
    • 1985-06-04
    • Eiji Baba
    • Eiji Baba
    • G06F13/36G06F9/52G06F13/18G06F13/364G06F13/40G06F15/16G06F15/177G06F9/00
    • G06F13/364G06F13/18G06F13/4031
    • A processor includes a central processing unit (CPU), a local memory and a local memory access device which are coupled to an internal bus, and an input/output (I/O) interface adapted to couple the internal bus to a system bus. The CPU generates a request signal for access to an external device coupled to the system bus and receives an acknowledgment signal for designating grant of usage of the system bus. The CPU releases the internal bus during the period of time from generation of the request signal until reception of the acknowledgment signal. Thus, the local memory access device can access the local memory during the period.
    • 处理器包括耦合到内部总线的中央处理单元(CPU),本地存储器和本地存储器访问设备,以及适于将内部总线耦合到系统总线的输入/输出(I / O)接口。 CPU产生用于访问耦合到系统总线的外部设备的请求信号,并且接收用于指定系统总线的使用授权的确认信号。 在从请求信号的生成到接收到确认信号的时间段期间,CPU释放内部总线。 因此,本地存储器访问设备可以在该时段期间访问本地存储器。
    • 5. 发明授权
    • DMA system employing plural bus request and grant signals for improving
bus data transfer speed
    • DMA系统采用多个总线请求和授权信号来提高总线数据传输速度
    • US4729090A
    • 1988-03-01
    • US630787
    • 1984-07-13
    • Eiji Baba
    • Eiji Baba
    • G06F13/28
    • G06F13/28
    • A data processing apparatus employing a DMA system has a newly added circuit having a register in addition to the normal combination of a host processor, a memory and a DMA controller. The added circuit is provided between the host processor and the DMA controller. The host processor produces a setting signal by itself for setting a bus request signal into the register of the added circuit. The added circuit applies the bus request signal set in the register to the host processor without an access from the DMA controller. The host processor receives the bus request signal and sends a bus usage grant signal to the added circuit when the host processor does not need to use a bus or after a processing using the bus has been completed, and electrically cuts off itself from the bus. The DMA controller requests a bus usage to the added circuit when a DMA transmission is required. At this timing, since the bus is already in an idle state, a permission signal to permit a bus usage is immediately returned to the DMA controller. Therefore, a high-speed DMA transmission can be performed. Particularly, a quick response between the host processor and the DMA controller can be achieved by means of the added circuit.
    • 采用DMA系统的数据处理装置除了主处理器,存储器和DMA控制器的正常组合之外,还具有新增的具有寄存器的电路。 添加的电路提供在主机处理器和DMA控制器之间。 主处理器自身产生一个设置信号,用于将总线请求信号设置到加入的电路的寄存器中。 添加的电路将寄存器中的总线请求信号设置到主机处理器,而无需DMA控制器的访问。 主处理器接收总线请求信号,并且当主机处理器不需要使用总线或者在使用总线的处理已经完成之后,向总线使用许可信号发送总线使用许可信号,并且将其自身从总线电切断。 当需要DMA传输时,DMA控制器向总线使用添加电路。 在该时刻,由于总线已经处于空闲状态,所以允许总线使用的允许信号立即返回给DMA控制器。 因此,可以执行高速DMA传输。 特别地,主处理器和DMA控制器之间的快速响应可以通过添加的电路来实现。
    • 6. 发明申请
    • COMMUNICATION SYSTEM, COMMUNICATION DEVICE, AND METHOD FOR OPERATING COMMUNICATION SYSTEM
    • 通信系统,通信设备和操作通信系统的方法
    • US20140093001A1
    • 2014-04-03
    • US14119660
    • 2012-03-08
    • Eiji Baba
    • Eiji Baba
    • H04B3/54H04L27/26
    • H04B3/54H04B2203/5416H04B2203/542H04L27/2601
    • A communication system according to the present invention comprises a first communication device and a second communication device for performing power line communication using a power line as a transmission line with the first communication device, and in the communication system, the first communication device has a detection means for detecting a zero crossing timing of a commercial power supply and a transmitting means for transmitting a transmission signal modulated in OFDM mode at the zero crossing timing, the transmitting means first transmits a header signal (HS) having a preamble as the transmission signal when the power line communication is started, and the transmitting means transmits a data signal (DS) having no preamble as the transmission signal after the header signal (HS) is transmitted, and the second communication device has a receiving means for performing a demodulation process on the transmission signal which is received, to thereby obtain receive data.
    • 根据本发明的通信系统包括第一通信设备和第二通信设备,用于使用电力线作为与第一通信设备的传输线进行电力线通信,并且在通信系统中,第一通信设备具有检测 用于检测商用电源的零交叉定时的装置和用于在零交叉定时发送以OFDM模式调制的发送信号的发送装置,发送装置首先发送具有作为发送信号的前导码的报头信号(HS)作为发送信号, 开始电力线通信,并且在发送头信号(HS)之后,发送装置发送没有前导码的数据信号(DS)作为发送信号,并且第二通信装置具有用于执行解调处理的接收装置 接收的发送信号,从而获得接收数据。
    • 7. 发明授权
    • Signal processing apparatus
    • 信号处理装置
    • US08488806B2
    • 2013-07-16
    • US12593928
    • 2008-03-26
    • Hiroshi SaruwatariEiji BabaHiromitsu Mori
    • Hiroshi SaruwatariYoshimitsu MoriEiji Baba
    • H04B15/00
    • G10L21/028
    • A separation signal generation unit generates a plurality of separation signals which are independent from one another from the mixed signals for one frame which are converted into those in a frequency region. A mask processing unit judges a noise condition of a first separation signal for each frequency bin on the basis of the first separation signal and second separation signals. The mask processing unit further removes a first noise component obtained on the basis of a judgment result on the noise condition from the first separation signal. A noise amount measuring unit measures the amount of noise in the first separation signal. A noise signal selection unit selects a noise signal for each frequency bin on the basis of the amount of noise measured by the noise amount measuring unit. A noise removing unit removes a second noise component from a noise removal signal inputted from the mask processing unit. The noise removing unit outputs the noise removal signal obtained by removing the second noise component as a target signal.
    • 分离信号生成单元从一帧的混合信号生成彼此独立的多个分离信号,该混合信号被转换成频率区域的混合信号。 掩模处理单元基于第一分离信号和第二分离信号来判断每个频率仓的第一分离信号的噪声条件。 掩模处理单元还基于来自第一分离信号的噪声条件的判定结果,去除获得的第一噪声分量。 噪声量测量单元测量第一分离信号中的噪声量。 噪声信号选择单元基于由噪声量测量单元测量的噪声量来选择每个频率仓的噪声信号。 噪声去除单元从从掩模处理单元输入的噪声去除信号中去除第二噪声分量。 噪声去除单元输出通过去除第二噪声分量而获得的噪声去除信号作为目标信号。
    • 8. 发明授权
    • Communication system, communication device, and method for operating communication system
    • 通信系统,通信设备和操作通信系统的方法
    • US09001903B2
    • 2015-04-07
    • US14119660
    • 2012-03-08
    • Eiji Baba
    • Eiji Baba
    • H04L27/00H04L27/28H04L7/00H04J3/06H04B3/54H04L27/26
    • H04B3/54H04B2203/5416H04B2203/542H04L27/2601
    • A communication system includes a first communication device and a second communication device for performing power line communication using a power line as a transmission line with the first communication device, and in the communication system, the first communication device includes a detection mechanism for detecting a zero crossing timing of a commercial power supply and transmitting mechanism for transmitting a transmission signal modulated in OFDM mode at the zero crossing timing, the transmitting mechanism first transmits a header signal having a preamble as the transmission signal when the power line communication is started, and the transmitting mechanism transmits a data signal having no preamble as the transmission signal after the header signal is transmitted, and the second communication device includes a receiving mechanism for performing a demodulation process on the transmission signal which is received, to thereby obtain receiving data.
    • 通信系统包括第一通信设备和第二通信设备,用于使用电力线作为与第一通信设备的传输线进行电力线通信,并且在通信系统中,第一通信设备包括用于检测零 用于在零交叉定时发送以OFDM模式调制的发送信号的商用电源和发送机制的交叉定时,当电力线通信开始时,发送机构首先发送具有作为发送信号的前导码的报头信号, 发送机构在发送头信号之后,发送没有前同步码的数据信号作为发送信号,第二通信装置包括对接收到的发送信号进行解调处理的接收机构,从而获得接收数据。