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    • 42. 发明申请
    • ELEVATED INTRACRANIAL PRESSURE TREATMENT
    • 高级治疗压力治疗
    • WO2016034851A1
    • 2016-03-10
    • PCT/GB2015/052453
    • 2015-08-25
    • THE UNIVERSITY OF BIRMINGHAM
    • SINCLAIR, Alex
    • A61K38/26C07K14/605A61P25/00
    • A61K38/26C07K14/57563C07K14/605
    • Provided is an incretin, or analogue thereof, an incretin receptor agonist, an incretin enhancer, or any combination thereof, for use in a method of reducing elevated intracranial pressure (ICP) in a subject. Methods of reducing elevated ICP in a subject may comprise administering an incretin,or analogue thereof, an incretin receptor agonist, an incretin enhancer, or any combination thereof to the subject. The elevated ICP may be associated with idiopathic intracranial hypertension (IIH), secondary pseudotumour cerebri, hydrocephalus, normal pressure hydrocephalus, raised intracranial pressure secondary to a brain tumour, meningitis, brain trauma, brain injury, and venous sinus thrombosis.
    • 提供一种肠降血糖素或其类似物,用于降低受试者的颅内压升高(ICP)的方法中的肠降血糖素受体激动剂,肠降征素增强剂或其任何组合。 减少受试者体内升高的ICP的方法可包括将肠降血糖素或其类似物,肠降血候素受体激动剂,肠降征素增强子或其任何组合施用于受试者。 升高的ICP可能与特发性颅内高压(IIH),继发性假瘤脑,脑积水,正常压力脑积水,脑肿瘤继发性升高的颅内压,脑膜炎,脑外伤,脑损伤和静脉窦血栓形成有关。
    • 50. 发明申请
    • POWER SYSTEM CONTROL
    • 电力系统控制
    • WO2015022501A1
    • 2015-02-19
    • PCT/GB2014/052432
    • 2014-08-08
    • THE UNIVERSITY OF BIRMINGHAM
    • ZHANG, Xiao-PingYANG, Xuan
    • H02J13/00G01R19/25
    • H02J13/0013G01R19/2513Y02B70/3216Y02B90/2607Y02E60/728Y02E60/74Y04S10/265Y04S10/30Y04S20/221Y04S40/12
    • The present invention relates to a method of controlling power flows and/or voltages in a power system. The method comprises monitoring conditions of voltage and/or current at a set of system locations for a scanning cycle of synchronised measurements. The scanning cycle comprises a series of time steps in which instantaneous sample measurements of voltage and/or current are taken. The monitoring provides data comprising the instantaneous sample measurements for a complete scanning cycle. A transient state estimation is determined based on the data for two or more sequential time steps. The transient state estimation includes an estimation of a non-sinusoidal voltage or current waveform caused by a disturbance to the power system. The method further includes forming a snapshot that includes instantaneous voltages, current flows and power flows of the power system. The method further includes making an adjustment to mitigate the effect of the disturbance. The invention also resides in a power system comprising a plurality of synchronised measurement units at locations in the power system. Each measurement unit is configured to obtain sample data over a synchronised scanning cycle comprising a series of time steps in which instantaneous sample measurements of voltages and/or currents are taken, and to transmit the instantaneous sample data for a complete scanning cycle after completion of the cycle. A transient state estimator is configured to receive and analyse the sample data to determine a transient state estimation based on the data for two or more sequential time steps. The transient state estimation includes an estimation of a non-sinusoidal voltage or current waveform caused by a disturbance to the power system. At least one power device adjusts an amount of power supplied to and/or drawn from the power system to mitigate the effect of the disturbance.
    • 本发明涉及一种控制电力系统中的功率流和/或电压的方法。 该方法包括在同步测量的扫描周期中监视一组系统位置处的电压和/或电流的条件。 扫描周期包括一系列时间步骤,其中采用电压和/或电流的瞬时采样测量。 该监视提供包括完整扫描周期的瞬时采样测量的数据。 基于两个或更多个连续时间步长的数据确定瞬态状态估计。 瞬态状态估计包括由对电力系统的干扰引起的非正弦电压或电流波形的估计。 该方法还包括形成包括电力系统的瞬时电压,电流和功率流的快照。 该方法还包括进行调整以减轻干扰的影响。 本发明还涉及一种在电力系统中的位置处包括多个同步测量单元的电力系统。 每个测量单元被配置为在同步的扫描周期上获得采样数据,该扫描周期包括一系列时间步长,其中采用电压和/或电流的瞬时采样测量,并且在完成扫描周期之后将瞬时采样数据传送到完整的扫描周期 周期。 瞬态状态估计器被配置为接收和分析样本数据,以基于两个或更多个连续时间步长的数据来确定瞬态状态估计。 瞬态状态估计包括由对电力系统的干扰引起的非正弦电压或电流波形的估计。 至少一个电力设备调整供应给电力系统和/或从电力系统抽取的电力量以减轻干扰的影响。