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    • 1. 发明授权
    • Method and apparatus for controlling the operational mode of electronic devices in response to sensed conditions
    • 响应于感测到的条件控制电子设备的操作模式的方法和装置
    • US09009505B2
    • 2015-04-14
    • US12726239
    • 2010-03-17
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F1/32G05B19/042
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 3. 发明授权
    • Method and apparatus for controlling electrical devices in response to sensed conditions
    • 用于响应于感测到的条件来控制电子装置的方法和装置
    • US06804726B1
    • 2004-10-12
    • US09628081
    • 2000-07-28
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F1300
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 4. 发明授权
    • Method for controlling electronic devices in response to sensed
conditions using physical characteristic signal indicating use or
anticipated use of the electronic device
    • 用于使用指示电子设备的使用或预期使用的物理特性信号来响应感测到的条件来控制电子设备的方法
    • US6098118A
    • 2000-08-01
    • US416093
    • 1999-10-12
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F13/00G05B19/042G06F1/32G06F19/00G06F13/10
    • G06F1/3287G05B19/042G06F1/3203G06F1/3209G06F1/3215G05B2219/25291Y02B60/1282Y02B60/32
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR CONTROLLING THE OPERATIONAL MODE OF ELECTRONIC DEVICES IN RESPONSE TO SENSED CONDITIONS
    • 用于控制电子设备操作模式对感觉条件的响应的方法和装置
    • US20100185303A1
    • 2010-07-22
    • US12726239
    • 2010-03-17
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G05B11/01
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括感测装置,诸如位置感测装置和姿态感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 6. 发明授权
    • Method and apparatus for controlling the operational mode of electronic devices in response to sensed conditions
    • 响应于感测到的条件控制电子设备的操作模式的方法和装置
    • US07696905B2
    • 2010-04-13
    • US10936235
    • 2004-09-08
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G01C21/00
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 9. 发明授权
    • Apparatus for controlling electrical devices in response to sensed
conditions
    • 用于响应于感测到的条件来控制电子装置的装置
    • US5991827A
    • 1999-11-23
    • US859997
    • 1997-05-21
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F13/00G05B19/042G06F1/32G06F19/00G06F13/10
    • G06F1/3287G05B19/042G06F1/3203G06F1/3209G06F1/3215G05B2219/25291Y02B60/1282Y02B60/32
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 10. 发明授权
    • Electro-optic vision system which exploits position and attitude
    • 利用位置和态度的电光视觉系统
    • US5815411A
    • 1998-09-29
    • US119360
    • 1993-09-10
    • John EllenbyThomas William Ellenby
    • John EllenbyThomas William Ellenby
    • G01C21/00G01C17/34G01C21/20G06F3/033G06F3/048G06T1/00G06T15/10G09G5/00G09G5/377H04N7/18G09G1/00G01C11/26G09G1/28
    • G06T15/10G01C17/34G01C21/20G06F3/011G06F3/0346G06F3/04815H04N5/23216G05B2219/32014
    • The present invention is generally concerned with electronic vision devices and methods, and is specifically concerned with image augmentation in combination with navigation, position, and attitude devices. In the simplest form, devices of the invention can be envisioned to include six major components: A 1) camera to collect optical information about a real scene and present that information as an electronic signal to; a 2) computer processor; a 3) device to measure the position of the camera; and a 4) device to measure the attitude of the camera (direction of the optic axis), thus uniquely identifying the scene being viewed, and thus identifying a location in; a 5) data base where information associated with various scenes is stored, the computer processor combines the data from the camera and the data base and perfects a single image to be presented at; a 6) display whose image is continuously aligned to the real scene as it is viewed by the user. The present invention is a vision system including devices and methods of augmented reality wherein an image of some real scene is altered by a computer processor to include information from a data base having stored information of that scene in a storage location that is identified by the real time position and attitude of the vision system. It is a primary function of the vision system of the invention, and a contrast to the prior art, to present augmented real images and data that is continuously aligned with the real scene as that scene is naturally viewed by the user of the vision system. An augmented image is one that represents a real scene but has deletions, additions and supplements.
    • 本发明通常涉及电子视觉装置和方法,并且特别涉及与导航,位置和姿态装置结合的图像增强。 以最简单的形式,本发明的设备可以被设想为包括六个主要部件:A 1)相机收集关于真实场景的光学信息并将该信息呈现为电子信号; a)计算机处理器; a 3)测量相机位置的设备; 和4)用于测量相机姿态(光轴方向)的装置,从而唯一地识别正在观看的场景,从而识别位置; 5)数据库,其中存储与各种场景相关联的信息,计算机处理器组合来自相机和数据库的数据,并且完成将呈现的单个图像; 6)显示器,其图像在用户观看时与实际场景连续对准。 本发明是包括增强现实的装置和方法的视觉系统,其中一些真实场景的图像被计算机处理器改变以包括来自具有存储在存储位置的信息的数据库的信息,该存储信息由真实的 视觉系统的时间地位和态度。 本发明的视觉系统的主要功能是与现有技术的对比,以呈现当视觉系统的用户自然观看场景时与实际场景连续对准的增强的真实图像和数据。 增强图像是表示真实场景的图像,但具有删除,添加和补充。