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    • 2. 发明申请
    • SYSTEM AND METHOD FOR VEHICLE SEPARATION FOR A PLURALITY OF VEHICLES
    • 用于多重车辆的车辆分离的系统和方法
    • WO2012087212A1
    • 2012-06-28
    • PCT/SE2010/051476
    • 2010-12-22
    • SAAB ABERIKSSON, Jan-Erik
    • ERIKSSON, Jan-Erik
    • G08G5/04G05D1/10
    • G08G5/04G05D1/104G08G1/161G08G5/0008G08G5/0013G08G5/045
    • The invention pertains to a vehicle separation system for a plurality of vehicles wherein the system is arranged to cooperatively provide distance separation for the plurality of vehicles, the system comprising: a storage module arranged in each of the plurality of vehicles, wherein each storage module comprises information related to a reference trajectory for each of the plurality of vehicles, a deviation detection module arranged to detect a deviation from said reference trajectory and generate at least one deviation alert, a communication module arranged to communicate the at least one deviation alert to each of the plurality of vehicles in response to the detected deviation, a separation module arranged to calculate an update of the reference trajectory for at least one of the plurality of vehicles, based on the reference trajectory of each of the plurality of vehicles, in order to provide distance separation between the plurality of vehicles.
    • 本发明涉及一种用于多个车辆的车辆分离系统,其中系统被布置为协作地为多个车辆提供距离间隔,该系统包括:布置在多个车辆中的每一个中的存储模块,其中每个存储模块包括 与所述多个车辆中的每一个的参考轨迹相关的信息;偏差检测模块,被布置成检测与所述参考轨迹的偏差并产生至少一个偏差警报;通信模块,被布置成将所述至少一个偏差警报传达到 所述多个车辆响应于所述检测到的偏差,分离模块被布置为基于所述多个车辆中的每一个的参考轨迹来计算所述多个车辆中的至少一个的所述参考轨迹的更新,以便提供 多个车辆之间的距离分离。
    • 4. 发明申请
    • A CONTINUOUS CASTING DEVICE
    • 连续铸造装置
    • WO2010069376A1
    • 2010-06-24
    • PCT/EP2008/067795
    • 2008-12-17
    • ABB ABERIKSSON, BooERIKSSON, Jan-ErikCURRAN, Christopher
    • ERIKSSON, BooERIKSSON, Jan-ErikCURRAN, Christopher
    • B22D11/115B22D11/18B22D11/20
    • B22D11/115B22D11/186B22D11/205
    • A continuous casting device, comprising a mould (1), an electromagnetic device (2), arranged outside the mould (1) and arranged to provide an electromagnetic field acting on a melt (5) in the mould (1), said electromagnetic device (2) being supplied with electric current comprising a base frequency and harmonics, and thereby providing a first electromagnetic field based on the base frequency and a second electromagnetic field based on said harmonics, and an inductive sensor (3), arranged at the mould (1) for the purpose of sensing the position of a meniscus of said melt (5), and operating at frequencies corresponding to said harmonics. The continuous casting device comprises at least one screen (8) provided between the electromagnetic device (2) and the sensor (3), and that said screen (8) is arranged so as to prevent the second electromagnetic field from disturbing the operation of the sensor (3) but to permit the first electromagnetic field to act on the melt (5) in the region of the meniscus.
    • 一种连续铸造装置,包括模具(1),电磁装置(2),其布置在模具(1)的外部并且被布置成提供作用在模具(1)中的熔体(5)上的电磁场,所述电磁装置 (2)被提供包括基频和谐波的电流,从而基于所述谐波提供基于所述基频和第二电磁场的第一电磁场,以及布置在所述模具处的电感式传感器(3) 1),用于感测所述熔体(5)的弯液面的位置,并以对应于所述谐波的频率进行操作。 连续铸造装置包括设置在电磁装置(2)和传感器(3)之间的至少一个屏(8),并且所述屏(8)被布置成防止第二电磁场干扰 传感器(3),但是允许第一电磁场在弯液面的区域中作用在熔体(5)上。
    • 7. 发明申请
    • RAILWAY WAGON
    • 铁路运输
    • WO2006031178A9
    • 2006-06-01
    • PCT/SE2005001312
    • 2005-09-12
    • JE UTVECKLING O FOERVALTNING AERIKSSON JAN
    • ERIKSSON JAN
    • B61D3/18B61D20060101B61D3/04B61D47/00
    • B61D3/184B61D47/005
    • The present invention relates to a railway wagon comprising a load carrier and front and rear bogies. The load carrier is releasably connected to, and laterally displaceable in relation to, the respective bogies. Supporting devices are mounted at the ends of the load carrier. They support the load carrier when it is displaced in relation to the bogie. Each supporting device comprises an abutment device which is vertically operable between a pulled-up position and an extended position. At each end of the load carrier there is also a displacing driving device for displacing the load carrier relative to the bogie, and a device that counteracts tilting tendencies of the load carrier. Each abutment device comprises a sliding member, which can slide on the base in the extended position. The railway wagon can thus be displaced, for instance pivoted outwards at one end, to allow a truck to be driven on to or off the same.
    • 本发明涉及一种铁路货车,其包括一个承载器和前后转向架。 承载器可释放地连接到相应的转向架并且可相对于相应的转向架横向移位。 支撑装置安装在载重架的端部。 当它们相对于转向架移动时,它们支撑载货架。 每个支撑装置包括可在上拉位置和伸出位置之间垂直操作的邻接装置。 在载重架的每一端还有用于使载重架相对于转向架移动的位移驱动装置,以及抵消载荷架倾斜趋势的装置。 每个邻接装置包括滑动构件,该滑动构件可以在延伸位置中在基座上滑动。 铁路货车因此可以被移动,例如在一端向外枢转,以允许卡车被驱动到或离开货车。
    • 8. 发明申请
    • LIGHTS SIGNAL
    • 灯信号
    • WO02082403A9
    • 2005-08-18
    • PCT/SE0200683
    • 2002-04-05
    • ERIKSSON JAN
    • ERIKSSON JAN
    • G08G1/095H05B39/04
    • H05B39/042G08G1/095Y02B20/14
    • The invention relates to a device for automatic adapting the signal light in one or in a group of traffic light signal devices dependent on light conditions and in view of the light intensity and angle. The device comprises a special light detector device (2, 2', 4) having at least one light inlet (3, 19, 20, 16, 17) for direct light coming from different directions and said inlet comprises at least one light sensitive device or sensor (5, 6, 6'), by which subseqently respective light is intensity controlled by the direct light at the same time as the general light is delimited and when occurring at least one light inlet (7) to one or more light sensitive devices (8) for detecting general light and adjusting the light intensity in the signal lights (9) of the light signal device in relation to the surroundings.
    • 本发明涉及一种用于根据光线条件并考虑到光强度和角度自动调整信号光在一个或一组交通信号灯信号装置中的装置。 该装置包括具有至少一个用于来自不同方向的直接光的光入口(3,19,20,16,17)的专用光检测器装置(2,2',4),并且所述入口包括至少一个光敏装置 或传感器(5,6,6'),其中随后的光在与一般光被界定的同时被强光控制,并且当至少一个光入口(7)发生到一个或多个光敏感 用于检测一般光并相对于周围环境调节光信号装置的信号光(9)中的光强度的装置(8)。
    • 10. 发明申请
    • METHOD FOR ASSESSING SIGNIFICANCE OF PROTEIN IDENTIFICATION
    • 评估蛋白质鉴定意义的方法
    • WO0077712A9
    • 2002-07-11
    • PCT/US0016638
    • 2000-06-15
    • UNIV ROCKEFELLERERIKSSON JANFENYOE DAVIDCHAIT BRIAN T
    • ERIKSSON JANFENYOE DAVIDCHAIT BRIAN T
    • C07K1/00C07K1/04G01N33/68G06F19/18G06F19/00
    • G01N33/6848C07K1/00C07K1/047G06F19/18
    • A method of generating a frequency distribution of scores for a particular experimental condition, wherein the scores relate to random identifications of biological molecules, the method comprising: a) generating mass data for the particular experimental condition for known biological molecules in a biological molecule database; b) generating mass data of a hypothetical biological molecule for the experimental condition; c) comparing the data generated in step (b) with the data generated for each known biological molecule in step (a); d) calculating a score for each comparison in step (c), wherein the score is a function of similarity between the data generated in step (a), which corresponds to a particular known biological molecule, and the data generated in step (b); e) selecting a score from the scores calculated in step (d), wherein the selected score corresponds to the comparison which denotes a high degree of similarity between the data generated in step (a) and the data generated in step (b); f) repeating steps (b) through (e) with different hypothetical biological molecules until a sufficient quantity of scores are selected; and g) determining the frequency of selecting each score and generating therefrom a frequency distribution of scores.
    • 一种生成特定实验条件的分数的频率分布的方法,其中所述分数涉及生物分子的随机标识,所述方法包括:a)产生生物分子数据库中已知生物分子的特定实验条件的质量数据; b)为实验条件产生假设生物分子的质量数据; c)将步骤(b)中产生的数据与在步骤(a)中为每个已知生物分子生成的数据进行比较; d)计算步骤(c)中每个比较的得分,其中所述得分是步骤(a)中生成的数据(其对应于特定已知生物分子)与步骤(b)中生成的数据之间的相似性的函数, ; e)从步骤(d)中计算的分数中选择分数,其中所选分数对应于表示步骤(a)中生成的数据与步骤(b)中生成的数据之间的高度相似度的比较; f)用不同的假设生物分子重复步骤(b)至(e),直到选择足够数量的分数; 以及g)确定选择每个分数的频率并由此产生分数的频率分布。