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    • 57. 发明申请
    • Handover method and apparatus for mobile terminal using location information in heterogeneous system network
    • 移动终端在异构系统网络中使用位置信息的切换方法和装置
    • US20060121914A1
    • 2006-06-08
    • US11295126
    • 2005-12-05
    • Won KimBong LeePyeong SongSang NamJae SongYeon Shin
    • Won KimBong LeePyeong SongSang NamJae SongYeon Shin
    • H04Q7/20
    • H04W36/14H04W36/32H04W48/18
    • A handover method and apparatus for a mobile terminal using location information in a network of heterogeneous systems are provided. The handover method uses service area map information provided by a location service server in a mobile communication network in which at least one or more heterogeneous wireless network systems are connected through a predetermined network and, includes: receiving service area map information transmitted from the location service server; the mobile terminal determining whether or not the location of the mobile terminal is within the service area map; and if it is determined that the mobile terminal is within the service area map, the wireless terminal selecting an accessible wireless network system and then activating a unit for communicating with a base station of the selected wireless network system. According to the method, a battery consumption problem that occurs by activating all modems when a wireless terminal, which is connected to a predetermined mobile communication system in an environment where a plurality of heterogeneous systems are overlapping each other, is searching for candidate systems in order to perform handover to a heterogeneous network, can be solved. Also, a problem where finding a candidate system is time-consuming can be solved.
    • 提供了一种在异构系统的网络中使用位置信息的移动终端的切换方法和装置。 切换方法使用由移动通信网络中的位置服务服务器提供的服务区域地图信息,其中至少一个或多个异构无线网络系统通过预定网络连接,并且包括:从位置服务发送的服务区域地图信息 服务器; 移动终端确定移动终端的位置是否在服务区域图内; 并且如果确定所述移动终端在所述服务区域映射内,则所述无线终端选择可访问无线网络系统,然后激活用于与所选择的无线网络系统的基站进行通信的单元。 根据该方法,当在多个异构系统彼此重叠的环境中连接到预定移动通信系统的无线终端时,通过激活所有调制解调器而发生的电池消耗问题正在按顺序搜索候选系统 可以解决异构网络的切换。 此外,可以解决发现候选系统耗时的问题。
    • 58. 发明申请
    • Method of driving plasma display panel
    • 驱动等离子体显示面板的方法
    • US20060082522A1
    • 2006-04-20
    • US11249325
    • 2005-10-14
    • Min KimWon KimKi ChoSung Lee
    • Min KimWon KimKi ChoSung Lee
    • G09G3/28
    • G09G3/294G09G3/2942G09G2320/0228
    • This invention relates to a method of driving a plasma display panel that is adaptive for generating a stable sustain discharge in a low opposition discharge voltage to improve a driving efficiency. A method of driving a plasma display panel, time-dividedly driven by dividing a plurality scan electrodes, sustain electrodes, and address electrodes into an initialization period, an address period, and a sustaining period, according to the present invention includes: applying a positive direct current voltage to the address electrode in the sustaining period; and applying a positive first sustaining pulse to the scan electrode and a positive second sustaining pulse to the sustain electrode, in the sustaining period.
    • 本发明涉及一种驱动等离子体显示面板的方法,该方法适于在低对置放电电压中产生稳定的维持放电以提高驱动效率。 根据本发明的驱动等离子体显示面板的方法,其通过将多个扫描电极,维持电极和寻址电极分割为初始化时段,寻址周期和持续时间而被分时驱动,包括:应用正 在持续时间内对寻址电极的直流电压; 并在维持期间向扫描电极施加正的第一维持脉冲,向维持电极施加正的第二维持脉冲。
    • 60. 发明授权
    • Galois field multiplier array for use within a finite field arithmetic unit
    • 用于有限域运算单元内的伽罗瓦域乘法器阵列
    • US07403964B2
    • 2008-07-22
    • US10459988
    • 2003-06-12
    • Joshua PortenWon KimScott D. JohnsonJohn R. Nickolls
    • Joshua PortenWon KimScott D. JohnsonJohn R. Nickolls
    • G06F15/00H03M13/00
    • G06F7/724
    • A Galois field multiplier array includes a 1st register, a 2nd register, a 3rd register, and a plurality of multiplier cells. The 1st register stores bits of a 1st operand. The 2nd register stores bits of a 2nd operand. The 3rd register stores bits of a generating polynomial that corresponds to one of a plurality of applications (e.g., FEC, CRC, Reed Solomon, et cetera). The plurality of multiplier cells is arranged in rows and columns. Each of the multiplier cells outputs a sum and a product and each cell includes five inputs. The 1st input receives a preceding cell's multiply output, the 2nd input receives at least one bit of the 2nd operand, the 3rd input receives a preceding cell's sum output, a 4th input receives at least one bit of the generating polynomial, and the 5th input receives a feedback term from a preceding cell in a preceding row. The multiplier cells in the 1st row have the 1st input, 3rd input, and 5th input set to corresponding initialization values in accordance with the 2nd operand.
    • 伽罗瓦域倍增器阵列包括1 寄存器,第二寄存器,第三寄存器和多个乘法器单元。 1&lt; ST&gt;寄存器存储1&lt; ST&gt;操作数的位。 2 寄存器存储第2个操作数的位。 3 寄存器存储对应于多个应用中的一个应用(例如,FEC,CRC,Reed Solomon等)的生成多项式的比特。 多个乘法器单元被排列成行和列。 每个乘法器单元输出和和乘积,并且每个单元包括五个输入。 1 输入接收前一个单元的乘法输出,第二个输入端接收第二个操作数的至少一位,3个< SUP> rd 输入接收前一个单元的和输出,第4个输入接收生成多项式的至少一个位,并且第5个输入接收一个 来自前一行中的前一个单元格的反馈项。 1 行中的乘法器单元具有1 输入,3 输入和5 输入 根据第2操作数设置为相应的初始化值。