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    • 16. 发明授权
    • Gain factor/matrix for whole link channel reciprocity in TDD MIMO relay system
    • TDD MIMO中继系统中全链路信道互易的增益因子/矩阵
    • US08280427B2
    • 2012-10-02
    • US12622014
    • 2009-11-19
    • Haifeng WangGang WuLihua LiLei SongPing ZhangXiafeng Tao
    • Haifeng WangGang WuLihua LiLei SongPing ZhangXiafeng Tao
    • H04Q7/20
    • H04W52/42H04W52/16
    • Measured are received power of a first signal received from a first entity, and received power of a second signal received from a second entity. A gain factor (or a matrix of gain factors if multiple antennas are used) is determined using the measured received powers of the first signal and of the second signal. If transmit power from the apparatus to the second entity is considered as the benchmark, the second signal is forwarded from the apparatus to the first entity using a second signal transmit power that is determined using the gain factor. Or, if transmit power from the apparatus to the first entity is considered as the benchmark, the first signal is forwarded from the apparatus to the second entity using a first signal transmit power that is determined using the gain factor. Method, apparatus, and memory storing computer program are detailed.
    • 测量的是从第一实体接收的第一信号的接收功率,以及从第二实体接收的第二信号的接收功率。 使用测量的第一信号和第二信号的接收功率来确定增益因子(或者如果使用多个天线的增益因子矩阵)。 如果从装置到第二实体的发射功率被认为是基准,则使用使用增益因子确定的第二信号发射功率将第二信号从装置转发到第一实体。 或者,如果从装置到第一实体的发射功率被认为是基准,则使用使用增益因子确定的第一信号发射功率将第一信号从装置转发到第二实体。 详细说明存储计算机程序的方法,装置和存储器。
    • 17. 发明申请
    • Gain Factor/Matrix for Whole Link Channel Reciprocity in TDD Mimo Relay System
    • 增益因子/矩阵,用于TDD Mimo中继系统中的整个链路信道互惠
    • US20100151793A1
    • 2010-06-17
    • US12622014
    • 2009-11-19
    • Haifeng WangGang WuLihua LiLei SongPing ZhangXiafeng Tao
    • Haifeng WangGang WuLihua LiLei SongPing ZhangXiafeng Tao
    • H04B17/00
    • H04W52/42H04W52/16
    • Measured are received power of a first signal received from a first entity, and received power of a second signal received from a second entity. A gain factor (or a matrix of gain factors if multiple antennas are used) is determined using the measured received powers of the first signal and of the second signal. If transmit power from the apparatus to the second entity is considered as the benchmark, the second signal is forwarded from the apparatus to the first entity using a second signal transmit power that is determined using the gain factor. Or, if transmit power from the apparatus to the first entity is considered as the benchmark, the first signal is forwarded from the apparatus to the second entity using a first signal transmit power that is determined using the gain factor. Method, apparatus, and memory storing computer program are detailed.
    • 测量的是从第一实体接收的第一信号的接收功率,以及从第二实体接收的第二信号的接收功率。 使用测量的第一信号和第二信号的接收功率来确定增益因子(或者如果使用多个天线的增益因子矩阵)。 如果从装置到第二实体的发射功率被认为是基准,则使用使用增益因子确定的第二信号发射功率将第二信号从装置转发到第一实体。 或者,如果从装置到第一实体的发射功率被认为是基准,则使用使用增益因子确定的第一信号发射功率将第一信号从装置转发到第二实体。 详细说明存储计算机程序的方法,装置和存储器。
    • 19. 发明授权
    • Energy-saving optimized control system and method for refrigeration plant room
    • 节能优化控制系统及制冷机房方法
    • US09423172B2
    • 2016-08-23
    • US13823535
    • 2010-10-13
    • Hoyuen WongGang Wu
    • Hoyuen WongGang Wu
    • F25D29/00G05B15/02
    • F25D29/00G05B15/02G05B2219/2638Y02P80/114
    • An energy-saving optimized control system for a chiller plant room comprises an industry control computer, a flow sensor, a temperature sensor, an outdoor temperature and humidity sensor, a three-phase active power transmitter, a water pump variable speed driver and a cooling tower fan variable speed driver, which are respectively connected with a programmable controller, wherein the programmable controller communicates with the industrial control computer through an industrial Ethernet; and an RS485 communication interface module is connected with chillers and communicates with the industrial control computer through a ModBus protocol. An energy-saving optimized control method for a chiller plant room is also provided. By establishing a mathematical model of the relationship between the energy consumption and operation parameters of each equipment in the refrigeration plant room and combining the real-time cooling loads and weather parameters, the operating state of each equipment is adjusted so as to reach the lowest operating energy consumption of the whole chiller plant room under the premise of meeting the cooling loads.
    • 一种用于冷冻机房的节能优化控制系统包括工业控制计算机,流量传感器,温度传感器,室外温湿度传感器,三相有功功率变送器,水泵变速驱动器和冷却 塔式风扇变速驱动器分别与可编程控制器连接,其中可编程控制器通过工业以太网与工业控制计算机通信; RS485通讯接口模块与冷却器连接,并通过ModBus协议与工控机通讯。 还提供了一种用于冷水机房的节能优化控制方法。 通过建立制冷机房各设备能耗与运行参数关系的数学模型,结合实时制冷负荷和天气参数,调整各设备的运行状态,达到最低运行 在满足冷却负荷的前提下,整个冷水机房的能耗。