会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 6. 发明授权
    • Land vehicles and systems with controllable suspension systems
    • 具有可控悬挂系统的陆地车辆和系统
    • US08374748B2
    • 2013-02-12
    • US12780061
    • 2010-05-14
    • Mark R. Jolly
    • Mark R. Jolly
    • B60G17/018
    • B60G17/015B60G17/0185B60G2400/102B60G2400/104B60G2400/106B60G2400/252B60G2400/60B60G2400/61B60G2401/16B60G2600/08B60G2800/80B60G2800/802
    • The land vehicle includes a body, a power plant and a plurality of land engagers, the land engagers for engaging land and propelling the land vehicle across land. The land vehicle includes a controllable suspension system, the controllable suspension system for controlling suspension movements between the body and the land engagers. The land vehicle includes a computer system and suspension sensors located proximate the land engagers for measuring suspension parameters representative of suspension movements between the body and the land engagers and outputting a plurality of suspension sensor measurement output signals. The land vehicle includes controllable force suspension members located proximate the land engagers and the suspension sensors, the controllable force suspension members applying suspension travel forces between the body and the land engagers to control the suspension movements. The land vehicle computer system includes controllable suspension system algorithms for controlling the controllable force suspension members to control vehicle body motion and the suspension movements between the body and the land engagers and inhibit the driver from crossing into an identified impending driver vehicle safety margin.
    • 陆地车辆包括车身,发电厂和多个地面工程,用于接地的土地使用者,并在陆地上推进陆上车辆。 陆地车辆包括可控制的悬挂系统,用于控制车身和陆地接地装置之间的悬挂运动的可控悬架系统。 陆地车辆包括计算机系统和位于陆地接地装置附近的悬架传感器,用于测量表示车身和陆地接合器之间悬架运动的悬挂参数,并输出多个悬架传感器测量输出信号。 陆地车辆包括位于陆地接合器和悬架传感器附近的可控力悬挂构件,可控力悬挂构件在身体和陆地接合器之间施加悬挂行程力以控制悬架运动。 陆上车辆计算机系统包括用于控制可控力悬挂构件以控制车体运动的控制悬架系统算法以及身体和陆地接合器之间的悬架运动,并且禁止驾驶员进入识别的即将到来的驾驶员车辆安全距离。
    • 7. 发明申请
    • LAND VEHICLES AND SYSTEMS WITH CONTROLLABLE SUSPENSION SYSTEMS
    • 具有可控悬挂系统的陆地车辆和系统
    • US20120035808A1
    • 2012-02-09
    • US13262384
    • 2010-03-30
    • Mark R. JollyLane R. MillerMark A Norris
    • Mark R. JollyLane R. MillerMark A Norris
    • B60G17/016
    • B60G17/015B60G17/0185B60G2400/102B60G2400/104B60G2400/106B60G2400/252B60G2400/60B60G2400/61B60G2401/16B60G2600/08B60G2800/80B60G2800/802
    • The land vehicle includes a body, a power plant and a plurality of land engagers, the land engagers for engaging land and propelling the land vehicle across land. The land vehicle includes a controllable suspension system, the controllable suspension system for controlling suspension movements between the body and the land engagers. The land vehicle includes a computer system and suspension sensors located proximate the land engagers for measuring suspension parameters representative of suspension movements between the body and the land engagers and outputting a plurality of suspension sensor measurement outputs. The land vehicle includes controllable force suspension members located proximate the land engagers and the suspension sensors, the controllable force suspension members applying suspension travel forces between the body and the land engagers to control the suspension movements. The land vehicle computer system includes a controllable suspension system algorithm for controlling the controllable force suspension members to control vehicle body motion and the suspension movements between the body and the land engagers, and a health usage monitoring algorithm for monitoring sensors and assessing a health and a usage of the vehicle and its suspension components.
    • 陆地车辆包括车身,发电厂和多个地面工程,用于接地的土地使用者,并在陆地上推进陆上车辆。 陆地车辆包括可控制的悬挂系统,用于控制车身和陆地接地装置之间的悬挂运动的可控悬架系统。 陆地车辆包括计算机系统和位于陆地接地装置附近的悬架传感器,用于测量悬挂参数,用于表示身体和陆地接合器之间的悬挂运动,并输出多个悬架传感器测量输出。 陆地车辆包括位于陆地接合器和悬架传感器附近的可控力悬挂构件,可控力悬挂构件在身体和陆地接合器之间施加悬挂行程力以控制悬架运动。 陆地车辆计算机系统包括用于控制可控力悬挂构件以控制车体运动和身体与陆地接合器之间的悬挂运动的可控制悬架系统算法,以及用于监测传感器并评估健康和健康状况的健康使用监测算法 使用车辆及其悬架部件。
    • 9. 发明授权
    • Active control of noise and vibration
    • 主动控制噪音和振动
    • US5627896A
    • 1997-05-06
    • US260660
    • 1994-06-18
    • Steve C. SouthwardDino J. RosettiMark R. Jolly
    • Steve C. SouthwardDino J. RosettiMark R. Jolly
    • G05D19/02G10K11/178G10K11/16
    • G10K11/178G05D19/02G10K2210/3012G10K2210/3039G10K2210/503
    • An active system for controlling vibration or sound. The system includes a method for limiting the output gain G from a gradient descent algorithm, such as an LMS algorithm, according to the relationship ##EQU1## and reducing one of first and second filter weights W.sub.1 and W.sub.0 such that G.ltoreq.G.sub.max ensuring the output canceling signal is never saturated. This eliminates the square wave shape which may impart unwanted harmonics or resonances to the dynamic system. In another aspect, the system eliminates drift of the output devices toward saturation when situations are encountered such as singularities in the quadratic performance surface. This is accomplished by applying leakage factor r(k) to a function f(k) at or near a predetermined limit to avoid saturation of the output device. The function f(k) can be the gain G or the weights W(k). Another aspect is to provide a constant, optimum, and stable adaptation rate in an LMS system by providing an optimum adaptation coefficient .mu..sub.opt that provides a constant, uniform, and optimum adaptation rate on a per period basis for all frequencies. Various combinations of the above are described and are useful in active control systems.
    • 用于控制振动或声音的主动系统。 该系统包括根据关系的梯度下降算法(例如LMS算法)来限制输出增益G的方法! 并且减少第一和第二滤波器权重W1和W0中的一个,使得确保输出消除信号的G max绝对不会饱和。 这消除了可能给动态系统带来不需要的谐波或谐振的方波形状。 在另一方面,当遇到诸如二次性能表面中的奇异点的情况时,系统消除输出装置朝向饱和的漂移。 这是通过在等于或接近预定极限的函数f(k)应用泄漏因子r(k)来实现的,以避免输出装置的饱和。 函数f(k)可以是增益G或权重​​W(k)。 另一方面是通过提供在每个周期基础上为所有频率提供恒定,均匀和最佳适应速率的最佳适配系数mu opt,在LMS系统中提供恒定的,最佳的和稳定的适应速率。 描述上述各种组合,并且在主动控制系统中是有用的。