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    • 1. 发明申请
    • GAS-LIQUID SEPARATOR AND FUEL CELL SYSTEM COMPRISING THE SAME
    • WO2022051960A1
    • 2022-03-17
    • PCT/CN2020/114357
    • 2020-09-10
    • ROBERT BOSCH GMBHWANG, FeiXU, NanKONG, LichaoZHAO, MengLIAO, ZhigangYE, Ziyang
    • WANG, FeiXU, NanKONG, LichaoZHAO, MengLIAO, ZhigangYE, Ziyang
    • B04C3/00H01M8/06
    • A gas-liquid separator in particular for a fuel cell system is disclosed which comprises a casing comprising a substantially vertical tube (101) with a lower end (102) and an upper end (103); a vortex finder (100) arranged in the tube (101) comprising: a hollow cylinder (1) defining a vertically extending central axis (O) and formed with a vertical passage (2) therethrough; a top flange (3) extending transversely outwards from a top end of the cylinder (1) and fixedly sealed against the inner surface of the tube (101); a bottom baffle (4) extending transversely outwards from a bottom end of the cylinder (1); a tubular wall (5) surrounding a lower part of the cylinder (1); and a plurality of blades (6) extending radially and connected between the cylinder (1) and the tubular wall (5), a circular space (8) being formed around an upper portion of the cylinder (1) between the plurality of blades (6) and the top flange (3), aporous body (200) arranged downstream of the vortex finder (100) in the tube (101) in a flow direction of the gas and fixed to the inner surface of the tube (101), preferably by press fit; an inlet (105) transversely arranged at the tube (101), the inlet (105) facing towards the circular space (8) and directed in a direction offset from the central axis of the vortex finder (100); an optional liquid outlet (106) arranged at the lower end (102) of the tube (101); and a gas outlet (107) arranged at the upper end (103) of the tube (101) to be in fluid communication with the porous body (200). A fuel cell system comprising the gas-liquid separator is also disclosed. The gas-liquid separator has a high separation efficiency and a low pressure drop.
    • 4. 发明申请
    • IMAGE ENHANCEMENT
    • 图像增强
    • WO2008142641A3
    • 2009-05-07
    • PCT/IB2008051975
    • 2008-05-20
    • KONINKL PHILIPS ELECTRONICS NVZHAO MENGCORDES CLAUS NVAN DER HEIJDEN HENRICUS W P
    • ZHAO MENGCORDES CLAUS NVAN DER HEIJDEN HENRICUS W P
    • G06T5/00
    • G06T5/007
    • A method of image enhancement linear contrast enhances(l) an input image signal (FI) to obtain a first enhanced signal (FLC), and non- linear contrast enhances (2) the input image signal (FI) to obtain a second enhanced signal (FGA). An average pixel value (FLF) of pixels of the input image signal (FI) is determined (3). The first enhanced signal (FLC) and the second enhanced signal (FGA) are mixed (4) in response to the average pixel value (FLF) to obtain a mixed signal (FMA). A contribution of the first enhanced signal (FLC) to the mixed signal (FMA) is lower for low and high values of the average pixel value (FLF) than for mid values of the average pixel value (FLF), and a contribution of the second enhanced signal (FGA) to the mixed signal (FMA) is higher for low and high values of the average pixel value (FLF) than for mid values of the average pixel value (FLF).
    • 图像增强线性对比度的方法增强(l)输入图像信号(FI)以获得第一增强信号(FLC),并且非线性对比增强(2)输入图像信号(FI)以获得第二增强信号 (FGA)。 确定输入图像信号(FI)的像素的平均像素值(FLF)(3)。 响应于平均像素值(FLF)将第一增强信号(FLC)和第二增强信号(FGA)混合(4)以获得混合信号(FMA)。 对于平均像素值(FLF)的低和高值,第一增强信号(FLC)对混合信号(FMA)的贡献比平均像素值(FLF)的中间值的贡献低, 对于平均像素值(FLF)的低和高值,与平均像素值(FLF)的中间值相比,混合信号(FMA)的第二增强信号(FGA)更高。
    • 5. 发明申请
    • METHOD AND SYSTEM FOR IMPLEMENTING CODEC TRANSITION FOR VOICE SERVICE
    • 用于实现语音服务编码转换的方法和系统
    • WO2009039676A1
    • 2009-04-02
    • PCT/CN2007/002801
    • 2007-09-24
    • LUCENT TECHNOLOGIES INC.ZHAO, YuezhengZHAO, MengGONG, Weiwen
    • ZHAO, YuezhengZHAO, MengGONG, Weiwen
    • H04Q7/22
    • H04W76/20H04W88/181
    • A method and system for implementing codec transition for voice service is provided. The method comprises setting up a traffic path on a channel in response to receiving a request for a first service, the channel having capability of handling at least a first codec for the first service; determining whether the channel supports the codec transition from the first codec to a second codec, in response to receiving a request for a second service via the traffic path; and responding to the request for the second service based on results of the determining step. The method and system realize the voice codec transition seamlessly without the hard handoff to switch the channel, so as to avoid the failure of channel allocation and to lower down the call dropped rate due to codec transition.
    • 提供了一种实现语音业务编解码转换的方法和系统。 所述方法包括:响应于接收到对第一服务的请求,在信道上建立业务路径,所述信道具有处理所述第一服务的至少第一编解码器的能力; 响应于经由所述业务路径接收到对第二服务的请求,确定所述信道是否支持从第一编解码器到第二编解码器的编解码器转换; 以及基于所述确定步骤的结果来响应所述第二服务的请求。 该方法和系统无缝地实现语音编解码转换,无需硬切换切换信道,避免信道分配失败,降低由于编解码转换引起的呼叫丢失率。
    • 6. 发明申请
    • IMAGE ENHANCEMENT
    • 图像增强
    • WO2008142641A2
    • 2008-11-27
    • PCT/IB2008/051975
    • 2008-05-20
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.ZHAO, MengCORDES, Claus, N.VAN DER HEIJDEN, Henricus, W., P.
    • ZHAO, MengCORDES, Claus, N.VAN DER HEIJDEN, Henricus, W., P.
    • G06T5/00
    • G06T5/007
    • A method of image enhancement linear contrast enhances(l) an input image signal (FI) to obtain a first enhanced signal (FLC), and non- linear contrast enhances (2) the input image signal (FI) to obtain a second enhanced signal (FGA). An average pixel value (FLF) of pixels of the input image signal (FI) is determined (3). The first enhanced signal (FLC) and the second enhanced signal (FGA) are mixed (4) in response to the average pixel value (FLF) to obtain a mixed signal (FMA). A contribution of the first enhanced signal (FLC) to the mixed signal (FMA) is lower for low and high values of the average pixel value (FLF) than for mid values of the average pixel value (FLF), and a contribution of the second enhanced signal (FGA) to the mixed signal (FMA) is higher for low and high values of the average pixel value (FLF) than for mid values of the average pixel value (FLF).
    • 图像增强线性对比度的方法增强(l)输入图像信号(FI)以获得第一增强信号(FLC),并且非线性对比增强(2)输入图像信号(FI)以获得第二增强信号 (FGA)。 确定输入图像信号(FI)的像素的平均像素值(FLF)(3)。 响应于平均像素值(FLF)将第一增强信号(FLC)和第二增强信号(FGA)混合(4)以获得混合信号(FMA)。 对于平均像素值(FLF)的低和高值,第一增强信号(FLC)对混合信号(FMA)的贡献比平均像素值(FLF)的中间值的贡献低, 对于平均像素值(FLF)的低和高值,与平均像素值(FLF)的中间值相比,混合信号(FMA)的第二增强信号(FGA)更高。