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    • 1. 发明授权
    • Dialing control method
    • 拨号控制方式
    • US05999617A
    • 1999-12-07
    • US816594
    • 1997-03-13
    • Shigeru OyanagiAkihiko NakaseMitsuru Kakimoto
    • Shigeru OyanagiAkihiko NakaseMitsuru Kakimoto
    • H04M3/48H04M3/42H04M3/51H04M3/523H04M3/60H04Q3/58H04M3/00
    • H04M3/5158H04M3/523
    • This invention relates to a dialing control method in a system, which comprises a PBX, a plurality of telephones connected to the PBX, a host computer connected to the PBX, and a plurality of operator terminals connected to the host computer, and in which an outbound task program runs on each terminal, and the host computer predicts a conversation completion timing of each operator for one called party, performs automatic dialing in accordance with a called party list prior to the completion of the conversation, and connects an answered call to the telephone corresponding to a free operator. The conversation completion timing is detected in advance by detecting execution of a specific portion of the program on the operator terminal, and the number of calls to be automatically originated is determined on the basis of the number of operators, whose conversation completion timings are detected in advance.
    • 本发明涉及一种系统中的拨号控制方法,其包括PBX,连接到PBX的多个电话,连接到PBX的主机和连接到主计算机的多个操作终端,其中 出站任务程序在每个终端上运行,并且主计算机预测一个被叫方的每个运营商的会话完成定时,在会话完成之前根据被叫方列表执行自动拨号,并将应答呼叫连接到 电话对应一个免费的运营商。 通过检测运营商终端上的节目的特定部分的执行来预先检测会话完成定时,并且基于检测到对话完成定时的运营商的数量来确定要自动发起的呼叫数量 提前。
    • 4. 发明授权
    • System for scheduling database transactions distributed over a network
at a locktime of preset delay
    • 用于在预设延迟的锁定时间通过网络调度数据库事务的系统
    • US5269020A
    • 1993-12-07
    • US714905
    • 1991-06-17
    • Mitsuru Kakimoto
    • Mitsuru Kakimoto
    • G06F12/00G06F17/30G06F15/40
    • G06F17/30362Y10S707/99938Y10S707/99939
    • A database management system has a plurality of nodes each having a computer, a database and a clock. The nodes are interconnected by a communication line. Each database stores a plurality of data for processing. When a transaction request is generated at a first node, a transaction management section of the first node computer determines which node database(s) includes necessary data for executing the transaction. A maximum delay decision section of the first node computer determines the maximum delay for sending an instruction to all of the nodes having necessary data. A locktime decision section of the first node computer determines a locktime according to the maximum delay determined and the current time of the clock. Then, a transaction management section of the first node computer sends the locktime through the communication line as a lock instruction to the node(s) having the necessary data. A scheduler section of the computer in the node(s) having the necessary data receives the lock instruction sent by the transaction management section of the first computer. An associated lock activation section activates the scheduler section when the locktime coincides with the current time of the clock. The scheduler section locks the necessary data in the database in response to activation by the lock activation section.