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    • 1. 发明申请
    • CONTENT DISTRIBUTION SYSTEM
    • 内容分配系统
    • US20120203903A1
    • 2012-08-09
    • US13500878
    • 2010-08-24
    • Kousuke NogamiKazushige Ishikawa
    • Kousuke NogamiKazushige Ishikawa
    • G06F15/173
    • H04N7/17318H04N21/2385H04N21/44209H04N21/44245H04N21/64322H04N21/6582
    • A content distribution system 100 includes user equipment 110, an application server system 120, and a connection control system 130. The user equipment 110 transmits a determination request of requesting determination of a communication bandwidth to the system 120 before transmission of a transmission request for establishing a connection for receiving content data. The system 120 acquires equipment attribute information representing the ability of the user equipment 110 based on the determination request, determines a communication bandwidth based on the equipment attribute information, and transmits the communication bandwidth to the user equipment 110. The user equipment 110 transmits a content transmission request including the received communication bandwidth to the system 130. The system 130 establishes a connection having the communication bandwidth included in the received content transmission request.
    • 内容分发系统100包括用户设备110,应用服务器系统120和连接控制系统130.用户设备110在发送建立传输请求之前向系统120发送请求确定通信带宽的确定请求 用于接收内容数据的连接。 系统120基于确定请求获取表示用户设备110的能力的设备属性信息,根据设备属性信息确定通信带宽,并将通信带宽发送给用户设备110.用户设备110发送内容 发送请求包括接收的通信带宽到系统130.系统130建立具有包括在所接收的内容传输请求中的通信带宽的连接。
    • 3. 发明申请
    • COMMUNICATION UNIT, COMMUNICATION SYSTEM, COMMUNICATION METHOD AND COMMUNICATION PROGRAM
    • 通信单元,通信系统,通信方法和通信程序
    • US20090310493A1
    • 2009-12-17
    • US12095104
    • 2006-11-27
    • Kousuke Nogami
    • Kousuke Nogami
    • H04L12/26H03M13/00H04L1/18G08C25/02
    • H04L1/205H04L1/004H04L1/18H04L65/80
    • A transmission-time measurement section (201) and a jitter measurement section (202) measure transmission time length and jitter, respectively, by using the packets transmitted/received. A forward-error-correction (FEC)-scheme maximum-jitter measurement section (203) calculates a maximum jitter in the case of adopting an FEC scheme, and an automatic-retransmission-request (ARQ)-scheme maximum-jitter measurement section (204) calculates a maximum jitter in the case of adopting an ARQ scheme from the measured information. A packet control section (205) selects a communication scheme having a smaller maximum jitter from both schemes based on the calculation result of the FEC-maximum-jitter measurement section (203) and ARQ-maximum-jitter measurement section (204).
    • 传输时间测量部分(201)和抖动测量部分(202)分别通过使用发送/接收的分组测量传输时间长度和抖动。 前向错误校正(FEC)最大抖动测量部(203)在采用FEC方式的情况下计算最大抖动,并且自动重发请求(ARQ) - 最大抖动测量部(ARQ) 204)根据测量信息计算采用ARQ方案的情况下的最大抖动。 分组控制部分(205)根据FEC最大抖动测量部分(203)和ARQ最大抖动测量部分(204)的计算结果从两个方案中选择具有较小最大抖动的通信方案。
    • 6. 发明申请
    • CONTENT DELIVERY SYSTEM, CONTENT DELIVERY METHOD, APPLICATION SERVER SYSTEM, USER EQUIPMENT, AND RECORDING MEDIUM
    • 内容传送系统,内容传送方式,应用服务器系统,用户设备和记录媒体
    • US20120311678A1
    • 2012-12-06
    • US13521364
    • 2010-12-10
    • Kousuke NogamiKozo Satoda
    • Kousuke NogamiKozo Satoda
    • G06F15/16G06F21/00
    • H04L63/104G06F21/10H04L2463/101H04N21/8586
    • A system 100 accepts a registration request which includes content marker information including content identification information and individually sharing user specifying information for specifying a user sharing the content marker information. The system stores the content marker information and the individually sharing user specifying information, included in the registration request, in a storage device in association with each other. The system accepts entirely sharing user specifying information which is a basic value of information for specifying a user sharing the stored content marker information. Based on the user identification information included in an accepted output request, the entirely sharing user specifying information, and the individually sharing user specifying information, the system extracts content marker information corresponding to the user identification information, and outputs the extracted content marker information.
    • 系统100接受包括内容标识信息的注册请求,该内容标识信息包括内容识别信息,并且分别共享用于指定共享内容标记信息的用户的用户指定信息。 系统将包含在注册请求中的内容标识信息和个体共享用户指定信息彼此关联地存储在存储设备中。 系统接受完全共享用户指定信息,该信息是用于指定共享存储的内容标记信息的用户的信息的基本值。 基于所接收的输出请求中包含的用户识别信息,完全共享用户指定信息和单独共享用户指定信息,系统提取与用户识别信息相对应的内容标记信息,并输出提取的内容标记信息。
    • 7. 发明申请
    • COMMUNICATION SYSTEM
    • 通讯系统
    • US20120014259A1
    • 2012-01-19
    • US13259043
    • 2010-02-10
    • Kousuke Nogami
    • Kousuke Nogami
    • H04L12/26
    • H04L47/283H04L47/25
    • A communication system includes a transmission device configured to transmit a packet and a reception device configured to receive the packet. The reception device is equipped with a behavior information acquisition unit, a model specification information acquisition unit, and a model specification information transmission unit. The behavior information acquisition unit acquires behavior information representing the behavior of a packet before the packet reaches the reception device from the transmission device. The model specification information acquisition unit acquires model specification information for specifying a mathematical model representing the behaviors of a plurality of packets based on the acquired behavior information. The model specification information transmission unit transmits the acquired model specification information to the transmission device. The transmission device is equipped with a model specification information reception unit. The model specification information reception unit receives model specification information.
    • 通信系统包括被配置为发送分组的传输设备和被配置为接收分组的接收设备。 接收装置配备有行为信息获取单元,模型指定信息获取单元和模型指定信息发送单元。 行为信息获取单元从传输设备获取表示分组到达接收设备之前的分组行为的行为信息。 模型指定信息获取单元基于获取的行为信息来获取用于指定表示多个分组的行为的数学模型的模型指定信息。 模型指定信息发送单元将所获取的模型指定信息发送到发送装置。 发送装置配备有型号规格信息接收部。 模型指定信息接收单元接收模型指定信息。
    • 8. 发明授权
    • Communication unit, communication system, communication method and communication program
    • 通信单元,通信系统,通信方式和通信程序
    • US07957312B2
    • 2011-06-07
    • US12095104
    • 2006-11-27
    • Kousuke Nogami
    • Kousuke Nogami
    • G01R31/08
    • H04L1/205H04L1/004H04L1/18H04L65/80
    • A transmission-time measurement section (201) and a jitter measurement section (202) measure transmission time length and jitter, respectively, by using the packets transmitted/received. A forward-error-correction (FEC)-scheme maximum-jitter measurement section (203) calculates a maximum jitter in the case of adopting an FEC scheme, and an automatic-retransmission-request (ARQ)-scheme maximum-jitter measurement section (204) calculates a maximum jitter in the case of adopting an ARQ scheme from the measured information. A packet control section (205) selects a communication scheme having a smaller maximum jitter from both schemes based on the calculation result of the FEC-maximum-jitter measurement section (203) and ARQ-maximum-jitter measurement section (204).
    • 传输时间测量部分(201)和抖动测量部分(202)分别通过使用发送/接收的分组测量传输时间长度和抖动。 前向错误校正(FEC)最大抖动测量部(203)在采用FEC方式的情况下计算最大抖动,并且自动重发请求(ARQ) - 最大抖动测量部(ARQ) 204)根据测量信息计算采用ARQ方案的情况下的最大抖动。 分组控制部分(205)根据FEC最大抖动测量部分(203)和ARQ最大抖动测量部分(204)的计算结果从两个方案中选择具有较小最大抖动的通信方案。
    • 9. 发明申请
    • TRAFFIC MANAGEMENT DEVICE, SYSTEM, METHOD, AND NON-TRANSITORY COMPUTER READABLE MEDIUM STORING PROGRAM
    • 交通管理设备,系统,方法和非终端计算机可读介质存储程序
    • US20140297857A1
    • 2014-10-02
    • US14354845
    • 2012-10-09
    • Kousuke Nogami
    • Kousuke Nogami
    • H04L12/26H04L12/24
    • H04L43/10H04L41/50H04L47/52
    • A traffic management device according to an exemplary embodiment includes an arrival rate computation unit that computes a traffic volume of upload content be uploaded to each service and converts the traffic volume into an arrival rate in a queue, a processing amount computation unit that collects information on an upload traffic volume which can be processed by each service and converts the upload traffic volume into a processing amount in the queue, a queue management unit that computes a queuing time of the upload content to be uploaded on the basis of both conversation results, and a scheduling computation unit that compares the computed queuing time with a predetermined threshold value and, if the queuing time exceeds the threshold value, regulates the traffic volume of allowable inflow upload content such that the queuing time of the upload content becomes less than the threshold value.
    • 根据示例性实施例的流量管理装置包括到达率计算单元,其计算上传到每个服务的上载内容的流量,并将流量转换为队列中的到达率;处理量计算单元,其收集关于 可以由每个服务处理的上传流量,并将上传流量转换成队列中的处理量;队列管理单元,基于两个会话结果计算要上传的上传内容的排队时间,以及 调度计算单元,其将所计算的排队时间与预定阈值进行比较,并且如果排队时间超过阈值,则调节允许流入上载内容的业务量,使得上传内容的排队时间变得小于阈值 。
    • 10. 发明授权
    • Communication unit, communication system, communication method and communication program
    • 通信单元,通信系统,通信方式和通信程序
    • US08520545B2
    • 2013-08-27
    • US13072954
    • 2011-03-28
    • Kousuke Nogami
    • Kousuke Nogami
    • H04L12/26
    • H04L1/205H04L1/004H04L1/18H04L65/80
    • A transmission-time measurement section (201) and a jitter measurement section (202) measure transmission time length and jitter, respectively, by using the packets transmitted/received. A forward-error-correction (FEC)-scheme maximum-jitter measurement section (203) calculates a maximum jitter in the case of adopting an FEC scheme, and an automatic-retransmission-request (ARQ)-scheme maximum-jitter measurement section (204) calculates a maximum jitter in the case of adopting an ARQ scheme from the measured information. A packet control section (205) selects a communication scheme having a smaller maximum jitter from both schemes based on the calculation result of the FEC-maximum-jitter measurement section (203) and ARQ-maximum-jitter measurement section (204).
    • 传输时间测量部分(201)和抖动测量部分(202)分别通过使用发送/接收的分组测量传输时间长度和抖动。 前向错误校正(FEC)最大抖动测量部(203)在采用FEC方式的情况下计算最大抖动,并且自动重发请求(ARQ) - 最大抖动测量部(ARQ) 204)根据测量信息计算采用ARQ方案的情况下的最大抖动。 分组控制部分(205)根据FEC最大抖动测量部分(203)和ARQ最大抖动测量部分(204)的计算结果从两个方案中选择具有较小最大抖动的通信方案。