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    • 1. 发明授权
    • Data scheduling module, method, and computer program product thereof for a wireless communication apparatus
    • 用于无线通信装置的数据调度模块,方法和计算机程序产品
    • US08175018B2
    • 2012-05-08
    • US12369471
    • 2009-02-11
    • Shih-Chang HuangChien ChenRong-Hong JanChih-Hsiang HoYu-Hsiang Lin
    • Shih-Chang HuangChien ChenRong-Hong JanChih-Hsiang HoYu-Hsiang Lin
    • G08C17/00
    • H04W28/06H04W72/12
    • A data scheduling module, a data scheduling method and computer program product thereof for a wireless communication apparatus are provided. The data scheduling method comprises the following steps: determining that the frame length of a second data transmission interval is not smaller than a frame length of a first data transmission interval; summing at least one first data and at least one second data according to the frame length of the second data transmission interval; calculating an average value according to the frame length of the second data transmission interval and the summed result; calculating an aggregate data transmission interval according to a data transmission capacity, the average value, and an integer adjusting value; and transmitting the at least one first data and the at least one second data via a plurality of frames in accordance with the aggregate data transmission interval.
    • 提供了一种用于无线通信装置的数据调度模块,数据调度方法及其计算机程序产品。 数据调度方法包括以下步骤:确定第二数据传输间隔的帧长度不小于第一数据传输间隔的帧长度; 根据第二数据传输间隔的帧长度对至少一个第一数据和至少一个第二数据求和; 根据第二数据传输间隔的帧长度和求和结果计算平均值; 根据数据传输容量,平均值和整数调整值计算聚合数据传输间隔; 以及根据所述聚合数据传输间隔经由多个帧发送所述至少一个第一数据和所述至少一个第二数据。
    • 2. 发明申请
    • BASE STATION, FEMTOCELL AND HANDOVER MONITORING METHOD THEREOF
    • 基站,FEMTOCELL和切换监控方法
    • US20120115460A1
    • 2012-05-10
    • US12960010
    • 2010-12-03
    • Yu-Hsiang LINChing-Lun LinZi-Tsan ChouRong-Hong Jan
    • Yu-Hsiang LINChing-Lun LinZi-Tsan ChouRong-Hong Jan
    • H04W36/00H04W84/00H04W24/00H04W88/08
    • H04W36/0083H04W84/045H04W88/02H04W88/08
    • A base station, a femtocell, and a handover monitoring method thereof are provided. A wireless network system comprises a server, a mobile device, the base station, and the femtocell. The base station transmits a monitoring signal to the femtocell after it obtains a piece of information corresponding to the mobile device from the server. The femtocell keeps detecting whether a signal is transmitted by the mobile device after it receives the monitoring signal. The femtocell transmits a response signal corresponding to the monitoring signal to the base station after it detects the signal transmitted by the mobile device. The base station transmits a handover signal to the mobile device after it receives the response signal so that the mobile device handovers from the base station to the femtocell. A handover monitoring from the base station to the femtocell for the mobile device is provided by the hand monitoring method.
    • 提供了基站,毫微微小区及其切换监控方法。 无线网络系统包括服务器,移动设备,基站和毫微微小区。 基站从服务器获取与移动装置对应的信息之后,向毫微微小区发送监视信号。 毫微微小区在接收到监视信号之后继续检测移动设备是否发送信号。 毫微微小区在检测到由移动设备发送的信号之后,向基站发送与监视信号相对应的响应信号。 基站在接收到响应信号之后向移动设备发送切换信号,使得移动设备从基站切换到毫微微小区。 通过手动监视方法提供从基站到移动设备的毫微微小区的切换监视。
    • 3. 发明授权
    • Communication system including a femtocell and communication method thereof
    • 包括毫微微小区的通信系统及其通信方法
    • US09380611B2
    • 2016-06-28
    • US13461440
    • 2012-05-01
    • Yu-Hsiang LinRong-Hong Jan
    • Yu-Hsiang LinRong-Hong Jan
    • H04W40/00H04W76/02H04W88/16H04W84/04
    • H04W76/02H04W76/10H04W76/15H04W84/045H04W88/16
    • The communication system comprises a base station (BS), a femtocell and a core network. The femtocell deployed within the signal coverage of the BS establishes a first wired connection with an internet service provider (ISP) network and a first wireless connection with a user equipment (UE). The core network establishes a second wired connection with the ISP network and a third wired connection with the BS. The core network is configured to determine that a voice data transmission service is about to be provided to the UE, and transmit a first radio access bearer (RAB) setup request message to the BS to enable the BS to establish a second wireless connection with the femtocell according to the first RAB setup request message so that the UE performs a voice data transmission with the core network via the first wireless connection, the second wireless connection and the third wired connection.
    • 通信系统包括基站(BS),毫微微小区和核心网。 部署在BS的信号覆盖范围内的毫微微蜂窝基站建立与互联网服务提供商(ISP)网络的第一有线连接以及与用户设备(UE)的第一无线连接。 核心网络与ISP网络建立第二个有线连接,并与BS建立第三个有线连接。 核心网络被配置为确定语音数据传输服务即将提供给UE,并且向BS发送第一无线电接入承载(RAB)建立请求消息,以使BS能够建立与第 毫微微小区根据第一RAB建立请求消息,使得UE经由第一无线连接,第二无线连接和第三有线连接与核心网络执行语音数据传输。
    • 5. 发明授权
    • Base station, femtocell and handover monitoring method thereof
    • 基站,毫微微小区及其切换监控方法
    • US08554223B2
    • 2013-10-08
    • US12960010
    • 2010-12-03
    • Yu-Hsiang LinChing-Lun LinZi-Tsan ChouRong-Hong Jan
    • Yu-Hsiang LinChing-Lun LinZi-Tsan ChouRong-Hong Jan
    • H04W36/00
    • H04W36/0083H04W84/045H04W88/02H04W88/08
    • A base station, a femtocell, and a handover monitoring method thereof are provided. A wireless network system comprises a server, a mobile device, the base station, and the femtocell. The base station transmits a monitoring signal to the femtocell after it obtains a piece of information corresponding to the mobile device from the server. The femtocell keeps detecting whether a signal is transmitted by the mobile device after it receives the monitoring signal. The femtocell transmits a response signal corresponding to the monitoring signal to the base station after it detects the signal transmitted by the mobile device. The base station transmits a handover signal to the mobile device after it receives the response signal so that the mobile device handovers from the base station to the femtocell. A handover monitoring from the base station to the femtocell for the mobile device is provided by the hand monitoring method.
    • 提供了基站,毫微微小区及其切换监控方法。 无线网络系统包括服务器,移动设备,基站和毫微微小区。 基站从服务器获取与移动装置对应的信息之后,向毫微微小区发送监视信号。 毫微微小区在接收到监视信号之后继续检测移动设备是否发送信号。 毫微微小区在检测到由移动设备发送的信号之后,向基站发送与监视信号相对应的响应信号。 基站在接收到响应信号之后向移动设备发送切换信号,使得移动设备从基站切换到毫微微小区。 通过手动监视方法提供从基站到移动设备的毫微微小区的切换监视。
    • 6. 发明授权
    • Fleet maintenance method and in-vehicle communication system
    • 车队维护方法和车载通信系统
    • US08170747B2
    • 2012-05-01
    • US12538165
    • 2009-08-10
    • Chien ChenHo-Wei TsaiJe-Wei ChangRong-Hong JanHsia-Hsin Li
    • Chien ChenHo-Wei TsaiJe-Wei ChangRong-Hong JanHsia-Hsin Li
    • G06F7/00
    • G08G1/20
    • A fleet maintenance method for generating a suggested speed for each vehicle in a fleet to maintain the vehicle in the fleet is provided. In the fleet maintenance method, vehicles are clustered into a plurality of sub-fleets, and in each sub-fleet, one vehicle is selected as a leader vehicle and the other vehicles are considered as member vehicles. Besides, a position coordinate and a speed of each vehicle in each sub-fleet are obtained, and the position coordinate is converted into a corresponding linear coordinate. In addition, a sub-fleet gravity center of each sub-fleet and a fleet gravity center of the entire fleet are calculated according to the linear coordinates. Moreover, a suggested speed of each leader vehicle is generated according to a gravity center distance of the leader vehicle, and a suggested speed of each member vehicle is generated.
    • 提供了用于为车队中的每个车辆产生建议速度以维持车队在车队中的车队维护方法。 在车队维护方法中,车辆集中成多个子车队,在每个子车队中,选择一辆车作为牵引车,其他车辆被视为会员车辆。 此外,获得每个子车队中的每个车辆的位置坐标和速度,并且将位置坐标转换成相应的线性坐标。 另外,根据线性坐标计算每个子舰队的子舰队重心和整个舰队的舰队重心。 此外,根据引导车辆的重心距离产生每个前导车辆的建议速度,并且产生每个成员车辆的建议速度。
    • 7. 发明申请
    • FLEET MAINTENANCE METHOD AND IN-VEHICLE COMMUNICATION SYSTEM
    • FLEET维护方法和车载通信系统
    • US20100268445A1
    • 2010-10-21
    • US12538165
    • 2009-08-10
    • Chien ChenHo-Wei TsaiJe-Wei ChangRong-Hong JanHsia-Hsin Li
    • Chien ChenHo-Wei TsaiJe-Wei ChangRong-Hong JanHsia-Hsin Li
    • G08G1/123
    • G08G1/20
    • A fleet maintenance method for generating a suggested speed for each vehicle in a fleet to maintain the vehicle in the fleet is provided. In the fleet maintenance method, vehicles are clustered into a plurality of sub-fleets, and in each sub-fleet, one vehicle is selected as a leader vehicle and the other vehicles are considered as member vehicles. Besides, a position coordinate and a speed of each vehicle in each sub-fleet are obtained, and the position coordinate is converted into a corresponding linear coordinate. In addition, a sub-fleet gravity center of each sub-fleet and a fleet gravity center of the entire fleet are calculated according to the linear coordinates. Moreover, a suggested speed of each leader vehicle is generated according to a gravity center distance of the leader vehicle, and a suggested speed of each member vehicle is generated.
    • 提供了用于为车队中的每个车辆产生建议速度以维持车队在车队中的车队维护方法。 在车队维护方法中,车辆集中成多个子车队,在每个子车队中,选择一辆车作为牵引车,其他车辆被视为会员车辆。 此外,获得每个子车队中的每个车辆的位置坐标和速度,并且将位置坐标转换成相应的线性坐标。 另外,根据线性坐标计算每个子舰队的子舰队重心和整个舰队的舰队重心。 此外,根据引导车辆的重心距离产生每个前导车辆的建议速度,并且产生每个成员车辆的建议速度。
    • 8. 发明授权
    • Method of elliptic curve cryptography using EW-MOF on scalar multiplication
    • 使用EW-MOF对标量乘法进行椭圆曲线加密的方法
    • US08666076B2
    • 2014-03-04
    • US13446430
    • 2012-04-13
    • Hung-Nan YeKuo-Chen WangRong-Hong Jan
    • Hung-Nan YeKuo-Chen WangRong-Hong Jan
    • H04L29/06
    • H04L9/3066G06F7/725H04L2209/80
    • A method of elliptic curve cryptography (ECC) using the enhanced window-based mutual opposite form (EW-MOF) on scalar multiplication. First, an elliptic curve and a base point on the elliptic curve are selected. Next, essential pre-computed points for a selected window size are calculated. Then, a private key is randomly generated and the mutual opposite form (MOF) is used to convert the private key's binary representation into a signed binary representation. Finally, a public key is calculated by using the enhanced window (EW) method. By greatly reducing the number of essential pre-computed points, the EW-MOF reduces average key generation time (including pre-computation time).
    • 一种使用增强型窗口相互形式(EW-MOF)对标量乘法进行椭圆曲线密码术(ECC)的方法。 首先,选择椭圆曲线和椭圆曲线上的基点。 接下来,计算所选窗口大小的必要的预先计算的点。 然后,随机生成私钥,并使用相互相反的形式(MOF)将私钥的二进制表示转换为带符号的二进制表示。 最后,通过使用增强窗口(EW)方法计算公钥。 EW-MOF通过大大减少基本预先计算的点数,减少平均密钥生成时间(包括预计算时间)。