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    • 9. 发明授权
    • Adaptive multi-vehicle area coverage optimization system and method
    • 自适应多车辆区域覆盖优化系统及方法
    • US08260485B1
    • 2012-09-04
    • US11857217
    • 2007-09-18
    • Ryan J. MeuthJohn L. VianEmad W. SaadDonald C. Wunsch
    • Ryan J. MeuthJohn L. VianEmad W. SaadDonald C. Wunsch
    • G01C22/00G08G1/123
    • G06Q10/063G05D1/0088G06Q10/04
    • A system and method for dividing a predefined search region into a map of a plurality of subregions to be searched by a plurality of mobile platforms, taking into account the capabilities of the mobile platforms and varying environmental conditions within the subregions, while minimizing the time needed to search each of the subregions. The system and method updates the map of the subregions as needed, in real time, to account for changing environmental conditions and changes in the capabilities of the mobile platforms being used. The subregions may also be determined using a desired level of probability for detecting targets within the subregions in a desired number of passes through the subregion. The system optimizes coverage time while insuring a desired probability of coverage (i.e., observability) for heterogeneous mobile platforms.
    • 一种系统和方法,用于将预定义的搜索区域划分为要由多个移动平台搜索的多个子区域的映射,同时考虑到移动平台的能力和次区域内的不同环境条件,同时最小化所需的时间 搜索每个子区域。 该系统和方法可以实时更新所需分区域的映射图,以应对不断变化的环境条件和正在使用的移动平台的能力变化。 也可以使用期望的级别的概率来确定次级区域,以在所述次区域内以期望的通过该次区域的通过次数来检测该子区域内的目标。 系统优化覆盖时间,同时为异构移动平台确保所需的覆盖概率(即可观察性)。
    • 10. 发明授权
    • Life-optimal power management methods for battery networks system
    • 电池网络系统的最佳电源管理方法
    • US08010250B2
    • 2011-08-30
    • US11758606
    • 2007-06-05
    • Mori M. BorumandAli R. MansouriJohn L. Vian
    • Mori M. BorumandAli R. MansouriJohn L. Vian
    • G06F19/00
    • H02J1/14B64D2221/00H02J4/00H02J7/0047
    • A system and methods for life optimal power management of a distributed or centralized battery network system for use in aircraft functions and subsystems are disclosed. The method determines power priority of the subsystems, and selectively distributes power from the battery network system to the subsystems based on the power priority. Concurrently with distributing power, the method manages the energy in the battery network system. To determine whether the battery power is sufficient for aircraft functions, the method also computes and indicates the actual available energy left in the battery network systems. With this approach, the system and methods can provide a persistent power supply in the event an unexpected battery failure occurs, thereby enabling the aircraft to safely maintain flight operability despite a battery failure.
    • 公开了一种用于航空器功能和子系统的分布式或集中式电池网络系统的寿命最佳功率管理的系统和方法。 该方法确定子系统的功率优先级,并根据电源优先级选择性地将电力从电池网络系统分配给子系统。 同时分配电力,该方法管理电池网络系统中的能量。 为了确定电池功率是否足够用于飞机功能,该方法还计算并指示电池网络系统中剩余的实际可用能量。 通过这种方法,系统和方法可以在发生意外的电池故障的情况下提供持久的电源,从而使飞机尽可能地电池故障来安全地保持飞行的可操作性。