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    • 6. 发明授权
    • Handover control apparatus, base station, edge router, relay router, radio terminal unit, mobile communication system, and handover control method
    • 切换控制装置,基站,边缘路由器,中继路由器,无线终端单元,移动通信系统和切换控制方法
    • US07424295B2
    • 2008-09-09
    • US11692126
    • 2007-03-27
    • Shinichi IsobeKen IgarashiAtsushi Iwasaki
    • Shinichi IsobeKen IgarashiAtsushi Iwasaki
    • H04Q7/20
    • H04W36/12H04L45/00H04W36/18
    • When a radio terminal unit 30 undergoes a handover between base stations 34, 36, a previous edge router 40 having been connected to the radio terminal unit 30, out of edge routers 40, 42 provided in respective base stations 34, 36, provides an instruction to instruct a relay router 48, under which the edge router 40 and every edge router 42 in the base station 36 as a candidate for a destination of the movement are connected, to buffer data from a correspondent node, and instructs the relay router to forward the data buffered in the relay router 48 according to the instruction, to the radio terminal unit 30 after the movement, after completion of the handover, whereby the buffered data is forwarded to the radio terminal unit 30. This implements forwarding packet data through the optimal path to the radio terminal unit after the movement in the handover control and achieves effective utilization of network resources and reduction of handover transactions.
    • 当无线电终端单元30经历基站34,36之间的切换时,已经连接到无线终端单元30的先前边缘路由器40在设置在相应基站34,36中的边缘路由器40,42之外提供指令 指示中继路由器48,将基站36内的边缘路由器40和作为移动目的地的候选者的边缘路由器42连接起来,从对应节点缓冲数据,并指示中继路由器转发 根据该指令在中继路由器48中缓存的数据在移动完成之后发送到无线电终端单元30,从而缓存的数据被转发到无线电终端单元30。 这实现了在切换控制中移动之后通过到无线电终端单元的最佳路径转发分组数据,并且实现了网络资源的有效利用和减少切换事务。
    • 7. 发明申请
    • HANDOVER CONTROL APPARATUS, BASE STATION, EDGE ROUTER, RELAY ROUTER, RADIO TERMINAL UNIT, MOBILE COMMUNICATION SYSTEM, AND HANDOVER CONTROL METHOD
    • 切换控制装置,基站,边缘路由器,继电器路由器,无线终端单元,移动通信系统和切换控制方法
    • US20070189221A1
    • 2007-08-16
    • US11692126
    • 2007-03-27
    • Shinichi ISOBEKen IgarashiAtsushi Iwasaki
    • Shinichi ISOBEKen IgarashiAtsushi Iwasaki
    • H04Q7/00
    • H04W36/12H04L45/00H04W36/18
    • When a radio terminal unit 30 undergoes a handover between base stations 34, 36, a previous edge router 40 having been connected to the radio terminal unit 30, out of edge routers 40, 42 provided in respective base stations 34, 36, provides an instruction to instruct a relay router 48, under which the edge router 40 and every edge router 42 in the base station 36 as a candidate for a destination of the movement are connected, to buffer data from a correspondent node, and instructs the relay router to forward the data buffered in the relay router 48 according to the instruction, to the radio terminal unit 30 after the movement, after completion of the handover, whereby the buffered data is forwarded to the radio terminal unit 30. This implements forwarding packet data through the optimal path to the radio terminal unit after the movement in the handover control and achieves effective utilization of network resources and reduction of handover transactions.
    • 当无线电终端单元30经历基站34,36之间的切换时,已经连接到无线终端单元30的先前边缘路由器40在设置在相应基站34,36中的边缘路由器40,42之外提供指令 指示中继路由器48,将基站36内的边缘路由器40和作为移动目的地的候选者的边缘路由器42连接起来,从对应节点缓冲数据,并指示中继路由器转发 根据该指令在中继路由器48中缓存的数据在移动之后到移动终端单元30,在完成切换之后,缓冲的数据被转发到无线终端单元30.这实现了通过最优的转发分组数据 在切换控制中移动之后到达无线电终端单元的路径,并实现网络资源的有效利用和减少切换事务。
    • 8. 发明申请
    • PRODUCTION PROJECT PROPOSAL DETERMINATION METHOD, PRODUCTION PROJECT PROPOSAL DEVICE AND PROGRAM
    • 生产项目建议决定方法,生产项目建议书和计划
    • US20150051939A1
    • 2015-02-19
    • US14386307
    • 2012-03-23
    • Takaaki KomuraKen IgarashiKatsuaki NakamizoDaisuke Shida
    • Takaaki KomuraKen IgarashiKatsuaki NakamizoDaisuke Shida
    • G06Q10/06
    • G06Q10/06314G05B19/41865G05B2219/32256Y02P90/20
    • A production plan planning method having: receiving, by a computer, an order including production time information on a product in a received order condition as received order information; searching, by the computer, the production schedule information storage part for production schedule information on the product stored in the received order information; allocating, by the computer, production schedule information on each process for the at least one first component to the retrieved production schedule information; and controlling, by the computer, the allocated production schedule information on the each process to take over the production time information, the third step comprising allocating production schedule information satisfying the production time information included in the received order condition of the received order information to the each process, the fourth step comprising controlling the respective allocated processes to sequentially take over production time information on a first process of the product.
    • 一种生产计划规划方法,其特征在于,具有:以计算机接收包含作为接收到的订单信息的产品的生产时间信息的订单, 由计算机搜索生产时间表信息存储部分,用于生产时间表信息存储在接收到的订单信息中的产品; 由所述计算机将关于所述至少一个第一组件的每个处理的生产计划信息分配给所述检索的生产计划信息; 以及由所述计算机控制所述分配的生产计划信息,用于接管所述生产时间信息的每个处理,所述第三步骤包括将接收到的订单信息的所接收的订单条件中包含的满足生产时间信息的生产计划信息分配给 每个处理,第四步骤包括控制各自分配的处理以顺序地接管关于产品的第一处理的生产时间信息。
    • 10. 发明授权
    • Communication terminal, congestion control method, and congestion control program
    • 通信终端,拥塞控制方法和拥塞控制程序
    • US07808910B2
    • 2010-10-05
    • US12017702
    • 2008-01-22
    • Ken IgarashiKenichi Yamazaki
    • Ken IgarashiKenichi Yamazaki
    • H04J1/16
    • H04L1/187H04L69/16H04L69/163
    • The congestion in a network can be avoided by effectively utilizing a prepared network band even in a network where reception intervals of acknowledgments are not correct. According to the information about Ack or Sack (selective acknowledgment) received in a time of the minimum value of an RTT (rtt_min), the number of bytes of received segments (rcv_bytes) for which a receiving side acknowledges the reception is counted, and a received byte number setting unit 16 sets a congestion window (CWND) or a slow start threshold (SSTHRESH) when a packet loss occurs according to the number of bytes of received segments (rcv_bytes) counted by a received byte number counting unit 14 when a packet loss is detected by a loss detection unit 15.
    • 即使在确认的接收间隔不正确的网络中也可以有效利用准备的网络频带来避免网络中的拥塞。 根据在RTT(rtt_min)的最小值的时间内接收到的关于Ack或Sack(选择性确认)的信息,接收侧确认接收的接收段(rcv_bytes)的字节数被计数,并且 接收字节数设定部16根据接收到的字节数计数部14的数据的字节数(rcv_bytes),当发生分组丢失时,设定拥塞窗口(CWND)或慢启动阈值(SSTHRESH) 由损失检测单元15检测到损失。