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    • 1. 发明申请
    • Method and apparatus for ADS-B validation, active and passive multilateration, and elliptical surviellance
    • 用于ADS-B验证,主动和被动多边测量以及椭圆曲线的方法和装置
    • US20070252760A1
    • 2007-11-01
    • US11541480
    • 2006-09-29
    • Alexander SmithRussell HulstromCarl EversThomas Breen
    • Alexander SmithRussell HulstromCarl EversThomas Breen
    • G01S3/02
    • G01S11/02G01S5/0027G01S13/78G01S13/878G01S13/91G01S13/93
    • A system and method are disclosed to track aircraft or other vehicles using techniques including multilateration and elliptical surveillance. Unlike conventional approaches that use time difference of arrival for multilateration at a fixed set of reception points, this technique allows targets to be tracked from a number of dynamic or moving reception points. This allows for triangulation/multilateration and elliptical surveillance of targets from combinations of fixed, fixed and moving or only moving ground-based receivers, sea-based receivers, airborne receivers and space-based receivers. Additionally this technique allows for ADS-B validation through data derived from only two receivers to assess the validity and integrity of the aircraft self-reported position by comparing the time of arrival of the emitted message at the second receiver to the predicted time of message arrival at the second receiver based on the self-reported position of the aircraft and the time of arrival at the first receiver. The benefits of using less than three receivers for validation include greater validation coverage areas using a smaller set of ground stations at a lower infrastructure cost.
    • 公开了一种使用包括多点和椭圆监视的技术跟踪飞行器或其他车辆的系统和方法。 与在固定的接收点集合使用多点的到达时间差的常规方法不同,该技术允许从多个动态或移动的接收点跟踪目标。 这允许从固定,固定和移动或仅移动的地面接收机,海基接收机,机载接收机和基于天基的接收机的组合中对目标进行三角测量/多边测量和椭圆监视。 此外,该技术允许通过仅从两个接收机导出的数据进行ADS-B验证,以通过比较第二接收机处的发射消息的到达时间与消息到达的预计时间来评估飞行器自报位置的有效性和完整性 在第二接收机上,基于飞行器的自我报告位置和到达第一接收机的时间。 使用少于三个接收机进行验证的好处包括使用较小的基站成本的较小的地面站集更多的验证覆盖区域。
    • 3. 发明申请
    • Airport pavement management system
    • 机场路面管理系统
    • US20060036378A1
    • 2006-02-16
    • US11145170
    • 2005-06-06
    • Alexander SmithThomas Breen
    • Alexander SmithThomas Breen
    • G06F19/00
    • E01C23/00
    • The AirScene™ Pavement Management System of the present invention automatically tracks data required to determine various factors in an assessment of current and future pavement maintenance needs and utilizes this data to quantify the pavement damage caused by each individual aircraft movement and thus compute pavement condition based on an initial survey and the calculations of accrued damage over time. This information can be displayed through AirScene™ in the form of tables, graphs, or graphically represented on an airport diagram showing present conditions, rates of accruing damage, and future wear rates and areas. The system draws on the data from the AirScene™ Data Warehouse (ADW), a single repository for all the information acquired from a number of different sources. These data include: Aircraft or vehicle type (wheel layout, weight, vehicle specific parameters, and the like), Aircraft or vehicle location (ground track, position, gate used, and the like), Aircraft or vehicle dynamics (velocity, acceleration, take off, touchdown, and the like), Aircraft or vehicle actual weight (cargo load, fuel load, and the like), as well as Future operational data (flight schedules, increasing flight loads and demand, and the like).
    • 本发明的AirScene TM路面管理系统自动跟踪在当前和未来路面维护需求的评估中确定各种因素所需的数据,并且利用该数据来量化由每个单独的飞机运动引起的路面损坏,从而计算路面状况 基于初步调查和随时间的累计损害的计算。 该信息可以通过AirScene(TM)以表格,图形的形式显示,或在机场图上以图形方式显示,显示现状,累积损害率和未来的磨损率和面积。 该系统利用来自AirScene(TM)数据仓库(ADW)的数据,该数据仓库是从许多不同来源获取的所有信息的单一存储库。 这些数据包括:飞机或车辆类型(车轮布局,重量,车辆特定参数等),飞机或车辆位置(地面轨道,位置,使用门等),飞机或车辆动力学(速度,加速度, 起飞,触地等),飞机或车辆实际重量(货物负载,燃料负载等)以及未来的运行数据(航班时刻表,增加的飞行负载和需求等)。
    • 4. 发明申请
    • Extension of aircraft tracking and positive identification from movement areas into non-movement areas
    • 将飞机跟踪和运动区域的积极识别扩展到非运动区域
    • US20070115165A1
    • 2007-05-24
    • US11545800
    • 2006-10-10
    • Thomas BreenAlexander SmithChristopher Rossano
    • Thomas BreenAlexander SmithChristopher Rossano
    • G01S13/93
    • G01S5/0294G01S5/0221G01S5/0263G01S5/06G01S2013/916
    • At most airports, responsibility of air traffic control starts and stops at the entrance or exit to the runway movement areas, which are taxiways and runways. In the non-movement areas, such as hangers, ramps, and aprons, aircraft movements and separation are no longer the responsibility of air traffic control, but is the responsibility of other parties such as the airport itself, airlines, or other parties. The use of tracking technologies for air traffic control is therefore focused on the movement areas, not the non-movement areas, where there are limitations in aircraft tracking. Furthermore, many of the aircraft transmitting devices are switched off in non-movement areas exacerbating tracking problems in these areas. The present invention includes several methods including broadband multilateration, to extend aircraft tracking from the movement areas into non-movement areas without the need to extend special air traffic control equipment into those areas.
    • 在大多数机场,空中交通管制的责任在滑行道和跑道的跑道运动区的入口或出口处开始和停止。 在非运动领域,如衣架,斜坡和围裙,飞机运动和分离不再是空中交通管制的责任,而是机场本身,航空公司或其他方面的其他方面的责任。 因此,利用跟踪技术进行空中交通管制的重点在于运动区域,而不是飞机跟踪方面存在局限性的非运动区域。 此外,许多飞机发射装置在非运动区域被关闭,从而加剧了这些区域的跟踪问题。 本发明包括多种方法,包括宽带多点化,将飞行器从运动区域跟踪延伸到非运动区域,而不需要将特殊的空中交通管制设备扩展到这些区域。
    • 5. 发明申请
    • Land use compatibility planning software
    • 土地利用兼容性规划软件
    • US20050182557A1
    • 2005-08-18
    • US11031457
    • 2005-01-07
    • Alexander SmithJonathan BaldwinRobert BlairThomas Breen
    • Alexander SmithJonathan BaldwinRobert BlairThomas Breen
    • G06G7/70G06Q10/00
    • G06Q10/10
    • A land use compatibility software module uses an existing suite of airport management programs to generate exception reports for FAA Part 77 land use compatibly surveys. Land use compatibility management is a manually intensive and time-consuming process. The noise officer may have to compute whether a proposed structure violates FAA's obstruction clearance criteria as set out in FAA's standard for obstacle clearance zones (Part 77). With these thee-dimensional zone shapes entered into AirScene™, the user may enter lat/long and height data for potential obstructions, such as cellular telephone towers as mentioned in the above example. The system will plot the potential obstructions on the map and will determine whether or not the height and proposed position of the tower violates the FAA's obstruction criteria for that runway. The system may be used to generate “exception reports” for proposed structures.
    • 土地使用兼容性软件模块使用现有的机场管理程序套件,为FAA第77部分土地利用兼容调查生成异常报告。 土地利用兼容性管理是一个手动密集和耗时的过程。 噪音干部可能需要计算一个建议的结构是否违反FAA的障碍物清除区标准(第77部分)所规定的FAA的障碍物清除标准。 使用进入AirScene(TM)的这些维度区域形状,用户可以为上述示例中提到的潜在障碍物(例如蜂窝电话塔)输入纬度/长度和高度数据。 该系统将绘制地图上的潜在障碍物,并确定塔架的高度和建议位置是否违反了FAA对该跑道的阻碍标准。 该系统可用于为所提出的结构生成“异常报告”。
    • 7. 发明申请
    • Automated management of airport revenues
    • 自动管理机场收入
    • US20060085236A1
    • 2006-04-20
    • US11203823
    • 2005-08-15
    • Alexander SmithThomas Breen
    • Alexander SmithThomas Breen
    • G06F9/44G06F17/50
    • G06Q10/06G06Q40/00
    • A solution is described which provides an airport with the tools to accurately manage all sources of airside revenues, including operational revenues and capital programs. The system of the present invention relies on the acquisition of any and all data related to the operations, property, lease, and revenue management of an airport, including aircraft tracking data. This data is then stored in a central database where it is processed, sorted, and stored for later retrieval. The data may exist in a number of forms including real-time streams, tabular, or in the form of a database. From this data, airport revenue information can be accurately managed.
    • 描述了一种解决方案,为机场提供准确管理所有空中收入来源的工具,包括运营收入和资本计划。 本发明的系统依赖于获取与机场的操作,财产,租赁和收入管理有关的任何和所有数据,包括飞机跟踪数据。 然后将该数据存储在中央数据库中,在其中处理,排序和存储以供稍后检索。 数据可以以包括实时流,表格或数据库的形式的多种形式存在。 从这些数据可以准确地管理机场收入信息。
    • 9. 发明申请
    • 7-Heteroarylsulfonyl-tetrahydro-3-benzazepine derivatives as antipsychotic agents
    • US20070093473A1
    • 2007-04-26
    • US10571220
    • 2004-09-09
    • David CooperIan ForbesVincenzo GarzyaAndrew GribbleAndrew LightfootAndrew PayneAlexander Smith
    • David CooperIan ForbesVincenzo GarzyaAndrew GribbleAndrew LightfootAndrew PayneAlexander Smith
    • A61K31/55C07D403/02C07D409/02
    • C04B35/632C07D401/12C07D409/12
    • The invention provides compounds of formula (I): wherein A and B represent the groups —(CH2)m— and —(CH2)n— respectively; R1 represents hydrogen or C1-6alkyl; R2 represents hydrogen, halogen, hydroxy, cyano, nitro, hydroxyC1-6alkyl, trifluoromethyl, trifluoromethoxy, C1-6alkyl, C1-6alkoxy, C1-6fluoroalkoxy, —(CH2)pC3-6cycloalkyl, —(CH2)pOC3-6cycloalkyl, —COC1-6alkyl, —SO2C1-6alkyl, —SOC1-6alkyl, —S—C1-6alkyl, —CO2C1-6alkyl, —CO2NR3R4, —SO2NR3R4, —(CH2)pNR3R4, —(CH2)pNR3COR4, optionally substituted aryl ring, optionally substituted heteroaryl ring, a fused bicyclic heteroaromatic ring system or optionally substituted heterocyclyl ring; Ar1 represents optionally substituted heteroaryl ring; Ar2 represents optionally substituted aryl ring or optionally substituted heteroaryl ring; Z represents —(CH2)qX— wherein the —(CH2)q— group is attached to Ar2, or —X(CH2)q— wherein X is attached to Ar2, and wherein any of the —CH2— groups may be optionally substituted by one or more C1-6alkyl groups; X represents oxygen, —CH(OR5)—, —NR5— or —CH2— wherein the —CH2— group may be optionally substituted by one or more C1-6alkyl groups; R3 and R4 each independently represent hydrogen, C1-6alkyl or, together with the nitrogen or other atoms to which they are attached, form an azacycloalkyl ring or an oxo-substituted azacycloalkyl ring; R5 represents hydrogen or C1-6alkyl; m and n independently represent an integer selected from 1 and 2; p independently represents an integer selected from 0, 1, 2 and 3; q independently represents an integer selected from 0, 1, 2 and 3; or a pharmaceutically acceptable salt or solvate thereof, with the proviso that when Ar1 is a pyridyl group, and Z is —CH2X— where X is attached to the Ar1 group, X is selected from —CH(OR5)—, —NR5— and —CH2— wherein the —CH2— group may be optionally substituted by one or more C1-6alkyl groups. The compounds of formula (I) are useful in therapy, in particular as antipsychotic agents.
    • 10. 发明申请
    • Aircraft boundary transition warnings and auto alerting
    • 飞机边界过渡警告和自动警报
    • US20050200501A1
    • 2005-09-15
    • US11111957
    • 2005-04-22
    • Alexander Smith
    • Alexander Smith
    • G01S13/78G08B23/00G08G5/04G08G5/06
    • G08G5/0013G01S5/0284G01S5/06G01S13/781G01S13/86G08G5/006G08G5/0082
    • In combination with a Geographic Information System (GIS), 3-dimensional shapes may be used to designate or identify blocks of airspace. These shapes may be defined in many ways including lat/long, local coordinates, or FAA transmitted directions for TFRs and ADIZs. These restricted areas and zones may be modeled using suitably modified AirScene™ software from Rannoch Corporation. AirScene™ software can locate various aircraft in the vicinity of restricted airspace, determine whether the aircraft is about to enter restricted airspace, and issue a warning to the pilot of such aircraft that restricted airspace is about to be violated. Such a warning can be audible (e.g., radio communication message) or visual (e.g., graphic display or even a flashing light or text message) and is much less distracting than having a laser shining in the cockpit. Since the AirScene™ system is ground-based, ground personnel can also be advised if restricted airspace is being violated, or even about to be violated.
    • 结合地理信息系统(GIS),可以使用三维形状来指定或识别空域。 这些形状可以以许多方式定义,包括TFR和ADIZs的纬度/长度,局部坐标或FAA传输方向。 这些限制区域和区域可以使用来自Rannoch Corporation的适当改进的AirScene(TM)软件进行建模。 AirScene(TM)软件可以在受限制的空域附近定位各种飞机,确定飞机是否即将进入有限的空域,并向受限制的空域即将违反的飞机的飞行员发出警告。 可以听到这样的警告(例如,无线电通信消息)或视觉(例如,图形显示,甚至闪烁的光或文本消息),并且比在驾驶舱中照射激光的分心更少。 由于AirScene(TM)系统是基于地面的,因此如果受限制的空域被侵犯或甚至被侵犯,也可以告知地面人员。