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    • 1. 发明授权
    • Vector processor
    • 矢量处理器
    • US5001626A
    • 1991-03-19
    • US512580
    • 1990-04-20
    • Masamori KashiyamaHitoshi Abe
    • Masamori KashiyamaHitoshi Abe
    • G06F17/16G06F15/78
    • G06F15/8076
    • In a vector processor in which a plurality of load/store pipelines from a plurality of arithmetic units and a main storage are used for input/output operations of vector data on a plurality of vector registers in a parallel fashion, vector data is communicated between the respective modules constituting a physically closed system. A sequence of odd-numbered vector data elements and a sequence of even-numbered vector data elements each having a phase difference of a half of a period of a basic machine cycle are communicated at a speed of the basic machine cycle. The module includes vector registers, each vector register is constituted with two RAM arrays being independently addressable and being capable of performing read and write operations at a speed which is twice the basic machine cycle. The two vector data element sequences are converted into a vector data element sequence having a speed which is twice the machine cycle such that the respective vector data elements are alternately written and read in the RAM arrays at a speed which is twice the basic machine cycle. The vector data element sequence thus read out is converted into a sequence of odd-numbered vector data elements and even numbered vector data elements each having a speed of the basic machine cycle and thus the attained vector data element sequences are output.
    • 在其中多个运算单元和主存储器的多个加载/存储管道以并行方式用于多个向量寄存器上的向量数据的输入/输出操作的向量处理器中,向量数据在 各个模块构成物理上封闭的系统。 以基本机器周期的速度来传送奇数矢量数据元素的序列和每个具有基本机器周期的周期的一半的相位差的偶数矢量数据元素的序列。 该模块包括向量寄存器,每个向量寄存器由两个可独立寻址的RAM阵列构成,能够以基本机器周期的两倍的速度执行读写操作。 两个向量数据元素序列被转换成具有两倍于机器周期的速度的向量数据元素序列,使得相应的矢量数据元素以基本机器周期的两倍的速度交替写入和读取到RAM阵列中。 这样读出的矢量数据元素序列被转换为奇数矢量数据元素和偶数矢量数据元素的序列,每个矢量数据元素具有基本机器周期的速度,从而输出所获得的矢量数据元素序列。
    • 4. 发明授权
    • Data-transmitter-receiver
    • 数据发射机 - 接收机
    • US5822329A
    • 1998-10-13
    • US949783
    • 1997-10-14
    • Kazunori NakajimaNoboru MasudaTadaaki IsobeMasamori KashiyamaBunichi FujitaMasakazu Yamamoto
    • Kazunori NakajimaNoboru MasudaTadaaki IsobeMasamori KashiyamaBunichi FujitaMasakazu Yamamoto
    • G06F5/06G06K5/04G11B5/00
    • G06F5/06
    • In transmitting and receiving signals between a plurality of units in a information processing system, signals can be transmitted and received between circuits operated by asynchronous clocks which are the same in period (frequency) but not necessarily to be the same in phase, thereby permitting the information processing system to operate with a shorter clock period. A delay circuit arranged in the communication path is so controllable that the data sent out in synchronism with the clock signal of a transmitting unit is correctly retrieved in synchronism with the clock signal of a receiving unit. Further, data having a predetermined simple pattern is sent out in synchronism with the clock signal of the transmitting unit, and it is decided whether the data has been correctly received by the receiving unit. The delay circuit is automatically controlled by use of the result of decision.
    • 在信息处理系统中的多个单元之间的发送和接收信号中,可以在由周期(频率)相同但不必相同的异步时钟操作的电路之间发送和接收信号,从而允许 信息处理系统在较短的时钟周期内运行。 布置在通信路径中的延迟电路是可控的,使得与发送单元的时钟信号同步发送的数据与接收单元的时钟信号同步正确检索。 此外,与发送单元的时钟信号同步地发送具有预定简单模式的数据,并且确定数据是否已被接收单元正确地接收。 延迟电路由决定结果自动控制。
    • 5. 发明申请
    • CHARGING CONTROL SYSTEM
    • 充电控制系统
    • US20120161692A1
    • 2012-06-28
    • US13333390
    • 2011-12-21
    • Yuichi KobayashiKeisuke ShiraiMasamori KashiyamaShimon Morii
    • Yuichi KobayashiKeisuke ShiraiMasamori KashiyamaShimon Morii
    • H02J7/00H01M10/46
    • B60L58/13Y02T10/7005Y02T10/7044Y02T10/705
    • In a charging control system, electrically-driven vehicles whose charging levels are lower than such a charging level required to drive these electrically-driven vehicles over a necessary minimum drivable distance are charged with a priority, and such an electrically-driven vehicle whose charging level quickly reaches the above-explained charging level among these electrically-driven vehicles is charged with a top priority. Also, in the charging control system, an order for dynamically charging vehicle-purpose batteries is rearranged by monitoring a change in charging environments, for instance, an electrically-driven vehicle is newly coupled to a charger in a half way; a commonly available electric power amount is increased by solar power generation etc.; and a supplyable electric power amount (W) is lowered due to utilization of electricity by a subject other than electrically-driven vehicles.
    • 在充电控制系统中,充电水平低于在必要的最小可驱动距离上驱动这些电动车辆所需的充电水平的电动车辆被优先充电,并且这种电动车辆的充电水平 在这些电动车辆中快速达到上述充电水平被最高优先地收费。 此外,在充电控制系统中,通过监视充电环境的变化来重新布置用于动态充电车用电池的顺序,例如,电动车辆以一半方式新连接到充电器; 通过太阳能发电等增加通常的电力量; 并且可供电电力量(W)由于电动车辆以外的物体的电力而被降低。
    • 6. 发明申请
    • WIRELESS COMMUNICATION CONTROL APPARATUS AND METHOD FOR MOBILE OBJECTS
    • 无线通信控制装置和移动对象的方法
    • US20090209282A1
    • 2009-08-20
    • US12388073
    • 2009-02-18
    • Yuichi KobayashiMasamori Kashiyama
    • Yuichi KobayashiMasamori Kashiyama
    • H04M1/00H04W4/02
    • H04W28/18H04W48/18H04W64/006
    • According to one aspect of wireless communication control apparatus and method for a mobile object according to the present invention, the wireless communication apparatus and method include the steps of: collecting communication-state information corresponding to positional information of the mobile object for each of a plurality of communication methods that are used to make a connection to a wireless communication device of the mobile object, and that can be selectively set in the wireless communication device; referring to the communication-state information corresponding to the positional information indicating a current position of the mobile object, and selecting one communication method from among the plurality of communication methods that can be selectively set in the wireless communication device; and setting, in the wireless communication device, control information used for communications based on the selected communication method.
    • 根据本发明的移动体的无线通信控制装置和方法的一个方面,所述无线通信装置和方法包括以下步骤:收集与多个移动体对应的移动体的位置信息相对应的通信状态信息 用于与移动对象的无线通信设备建立连接并且可以在无线通信设备中选择性地设置的通信方法; 参照与表示移动体的当前位置的位置信息对应的通信状态信息,从无线通信装置中可以选择设定的多个通信方式中选择一种通信方式; 以及在所述无线通信设备中,基于所选择的通信方法来设置用于通信的控制信息。
    • 10. 发明授权
    • Wireless communication control apparatus and method for mobile objects
    • 用于移动物体的无线通信控制装置和方法
    • US08116811B2
    • 2012-02-14
    • US12388073
    • 2009-02-18
    • Yuichi KobayashiMasamori Kashiyama
    • Yuichi KobayashiMasamori Kashiyama
    • H04M1/00
    • H04W28/18H04W48/18H04W64/006
    • According to one aspect of wireless communication control apparatus and method for a mobile object according to the present invention, the wireless communication apparatus and method include the steps of: collecting communication-state information corresponding to positional information of the mobile object for each of a plurality of communication methods that are used to make a connection to a wireless communication device of the mobile object, and that can be selectively set in the wireless communication device; referring to the communication-state information corresponding to the positional information indicating a current position of the mobile object, and selecting one communication method from among the plurality of communication methods that can be selectively set in the wireless communication device; and setting, in the wireless communication device, control information used for communications based on the selected communication method.
    • 根据本发明的移动体无线通信控制装置和方法的一个方面,所述无线通信装置和方法包括以下步骤:收集与移动体的位置信息对应的通信状态信息, 用于与移动对象的无线通信设备建立连接并且可以在无线通信设备中选择性地设置的通信方法; 参照与表示移动体的当前位置的位置信息对应的通信状态信息,从无线通信装置中可以选择设定的多个通信方式中选择一种通信方式; 以及在所述无线通信设备中,基于所选择的通信方法来设置用于通信的控制信息。