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    • 1. 发明授权
    • Marine emergency position indicating system
    • 海上应急位置指示系统
    • US09384648B2
    • 2016-07-05
    • US13703540
    • 2011-11-11
    • Xiaoshang YanYi LiangPeng Yan
    • Xiaoshang YanYi LiangPeng Yan
    • G08B1/08G08B21/08G01S5/02G01S3/48G01S5/12G01S11/06
    • G08B21/088G01S3/48G01S5/0231G01S5/12G01S11/06
    • A marine emergency position indicating system that can communicate wirelessly between beacon and search engine is provided. When someone carrying the beacon falls into the water, power supply of the beacon opens through drowning automatic switch or manual switch, therefore the beacon can emit wireless SOS signals out. Rescue boat or aircraft installed with search engine can search and receive SOS signals sent from beacons over a 5-kilometer radius along the way to accidental site. The search engine can distinguish the beacons around this area and determine the direction and approximate distance between drowning persons carrying beacons and the search engine through wireless communication technology and wireless positioning technology to help rescuers implement fixed-point rescue. Therefore, the marine emergency position indicating system can overcome the bad weather impact on marine rescue, speed up the rescue process and improve the success possibilities of fixed-point rescue.
    • 提供可以在信标和搜索引擎之间进行无线通信的海上应急位置指示系统。 携带信标的人落入水中时,通过淹没自动开关或手动开关打开信标灯,因此信标可以发出无线SOS信号。 搭载搜索引擎的救生艇或飞机可以搜索并接收在距离意外地点5公里半径的信标发送的SOS信号。 搜索引擎可以区分该区域的信标,并通过无线通信技术和无线定位技术确定携带信标的溺水者与搜索引擎之间的方向和近似距离,以帮助救援人员实施定点救援。 因此,海上应急指示系统可以克服天气对海上救援的不利影响,加快救援过程,提高定点救援的成功可能性。
    • 8. 发明申请
    • Zone based repeated runout error compensation
    • 基于区域的重复跳动误差补偿
    • US20080225654A1
    • 2008-09-18
    • US11724124
    • 2007-03-14
    • Reed D. HansonThomas C. ZirpsPeng YanSamir MittalTimothy F. Ellis
    • Reed D. HansonThomas C. ZirpsPeng YanSamir MittalTimothy F. Ellis
    • G11B7/00
    • G11B5/59627
    • Compensation for repeated runout (RRO) error, such as in a data storage device servo circuit, is preferably carried out by obtaining a population distribution of RRO error values from at least selected ones of a subset of tracks. An RRO error compensation value is determined for each one of the subset of tracks when a variance characteristic of said population distribution meets a selected criterion. Preferably, a first track of a storage medium has a servo field at a first angular position on the medium, a repeated runout (RRO) error compensation field at a second angular position on the medium, and a user data field at a third angular position on the medium. An immediately adjacent second track preferably has a servo field at the first angular position and a user data field at the second angular position in lieu of an RRO error compensation field.
    • 针对重复跳动(RRO)错误的补偿,例如在数据存储设备伺服电路中,优选地通过从轨道子集中的至少选定的RRO误差值获得RRO误差值的总体分布来执行。 当所述人口分布的方差特征满足所选择的标准时,对于轨道子集中的每一个确定RRO误差补偿值。 优选地,存储介质的第一轨道在介质上的第一角度位置处具有伺服磁场,在介质上的第二角位置处的重复跳动(RRO)误差补偿场,以及在第三角位置处的用户数据场 在媒体上 最近相邻的第二轨道优选地具有位于第一角位置处的伺服场,而在第二角位置具有用户数据场,而不是RRO误差补偿场。