CN106352804B - 与nist标准兼容的使用动态精度的移动尺寸确定设备的方法 - Google Patents
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Abstract
本发明涉及与NIST标准兼容的使用动态精度的移动尺寸确定设备的方法。描述了一种移动尺寸确定设备,即移动尺寸确定器,其使用动态精度而同时仍然与NIST标准兼容。即便精度分度是动态的并且不是预确定的,本发明的移动尺寸确定设备也在测量结果捕获之前报告实际尺寸确定,并且因此可以被认证并用在商业交易中。
Description
相关申请的交叉引用
本申请要求2015年7月15日提交给欧洲专利局的欧洲专利申请号15176943.7的aMethod for a Mobile Dimensioning Device to Use a Dynamic Accuracy Compatible with NIST Standard的优先权,该欧洲专利申请通过引用以其整体并入本文。
技术领域
本发明涉及移动体积尺寸确定(dimension)设备。
背景技术
传统的多尺寸确定测量设备(MDMD)基于系统的预确定的精度来捕获诸如包裹或集装箱之类的对象的三维尺寸(即长度、宽度、高度)。在美国国家标准技术研究所(NIST)标准中,系统的这种预确定的精度水平被称为精度分度(division)。
一些MDMD设备支持以不同精度分度的操作,但这些精度分度仍然是预确定的。例如,MDMD可以针对具有小于50cm的尺寸的对象提供具有1cm的精度的测量结果,并且可以针对具有大于50cm的尺寸的对象提供具有2cm的精度的测量结果。
预确定的精度分度针对固定尺寸确定系统工作,因为测量环境的参数在固定尺寸确定系统中已知。例如,对于固定MDMD,到要测量的对象的距离、查看角度和其它参数由设备的安装所限制。
然而,在移动尺寸确定设备(MDD)的情况下,不能控制影响系统的精度的许多参数。由于其精度的动态性质,MDD不容易与要求在实际测量之前报告精度分度的NIST认证兼容。这种NIST认证的缺乏一般阻止MMD用于商业交易。
因此,存在针对使用动态精度分度而同时保持与NIST标准兼容的移动尺寸确定设备的需要。
发明内容
因而,本发明的一方面公开了一种移动尺寸确定设备,包括:显示器;非易失性存储装置;一个或多个传感器;输入子系统;一个或多个处理器;以及包含指令的存储器,所述指令可由一个或多个处理器执行,由此设备可操作成:基于从一个或多个传感器所接收的信息针对所测量的对象的测量环境导出一个或多个精度参数;基于一个或多个精度参数而计算精度水平;确定精度水平是否对应于充分测量环境;如果精度水平对应于充分测量环境,则在显示器上显示测量环境是充分的指示以及使得能够实现测量结果捕获的捕获图标;响应于在捕获图标处所接收的输入而捕获测量结果;在显示器上显示对象的尺寸;以及记录对象的尺寸。
在附加示例性实施例中,精度水平是如由美国国家标准技术研究所(NIST)标准所限定的精度分度。
在又其它实施例中,精度参数包括包含以下各项的组中的至少一个:到对象的距离、相对于对象的查看角度、温度、环境光、以及来自一个或多个传感器的数据的质量。
在另外的实施例中,一个或多个传感器包括包含以下各项的组中的至少一个:光学传感器和测量传感器。
在附加实施例中,光学传感器选自包含以下各项的组:条形码传感器、相机和图像传感器。
在一些实施例中,测量传感器选自包含以下各项的组:点云投影、结构光、以及立体相机和n观(n-scopic)相机。
在另一实施例中,充分测量环境是其中精度分度具有低值的环境。
在更多实施例中,在显示器上显示测量环境是充分的指示包括包含以下各项的组中的至少一个:显示精度分度、显示使得能够实现测量结果捕获的图标、移除用于改进测量环境的指示、显示完成进度条、以及显示确认图标。
在又其它实施例中,在显示器上显示对象的尺寸包括显示对象的尺寸。
并且又在另外的实施例中,在显示器上显示对象的尺寸包括显示对象的尺寸以及对应的精度分度。
在一些实施例中,基于精度参数计算精度水平包括在精度参数上运行多变量回归。
在其它实施例中,对象的尺寸和精度水平存储在非易失性存储装置中。
在又其它实施例中,设备进一步可操作成:确定之前已经测量了所测量的对象;从从非易失性存储装置检索对象的尺寸和精度水平;在显示器上显示来自来自非易失性存储装置的对象的尺寸和精度水平;以及记录来自来自非易失性存储装置的对象的尺寸和精度水平。
在另外的实施例中,设备进一步可操作成:如果精度水平不对应于充分测量环境,则提供用于改进测量环境的指示。
在又另外的实施例中,用于改进测量环境的指示包括包含以下各项的组中的至少一个:文本指令、图形指令和图形图标。
在附加实施例中,用于改进测量环境的指示包括包含以下各项的组中的至少一个:用于缩短到对象的距离的指示、用于改进相对于对象的查看角度的指示、延迟测量直到目标操作温度的指示、和用于改进环境光的指示、以及用于调节一个或多个传感器以改进数据的质量的指示。
本发明的附加方面公开了一种移动尺寸确定设备,包括:显示器;非易失性存储装置;一个或多个传感器;输入子系统;一个或多个处理器;以及包含指令的存储器,所述指令可由一个或多个处理器执行,由此设备可操作成:基于从一个或多个传感器所接收的信息针对所测量的对象的测量环境导出一个或多个精度参数;基于一个或多个精度参数而计算精度水平;确定精度水平是否对应于充分测量环境;如果精度水平对应于充分测量环境,则在显示器上显示使得能够进行精度水平的显示的接受图标;在显示器上显示精度水平和使得能够实现测量结果捕获的捕获图标。
在另一实施例中,设备进一步可操作成:响应于在捕获图标处所接收的输入而捕获测量结果;在显示器上显示对象的尺寸;以及记录对象的尺寸。
本发明的以上说明性发明内容以及其它示例性目标和/或优点和实现本发明所采用的方式在以下具体实施方式及其随附各图内进一步解释。
附图说明
图1是根据所公开的主题的实施例的设备的硬件元件的框图。
图2A、2B和2C是依照所公开的主题的一个实施例的系统的图形用户界面(GUI)的示例。
图3A、3B、3C和3D是依照所公开的主题的一个实施例的系统的GUI的示例。
图4是概示出依照所公开的主题的实施例的用于操作设备的过程的流程图。
具体实施方式
本发明包含使用动态精度而同时仍然与NIST标准兼容的移动尺寸确定设备的概念。即便精度分度是动态的并且不是预确定的,本发明的移动尺寸确定设备也在测量结果捕获之前报告实际的尺寸确定,并且因此可以被认证并用在商业交易中。此外,由于针对MDMD的NIST标准从国际法制计量组织(OIML)R129标准导出,所以本发明的移动尺寸确定设备应当符合于OIML R 129标准以及从OIML R 129导出的任何其它标准。
图1图示了针对本发明的一个实施例的示例性设备100,诸如移动尺寸确定设备。设备100可以包括未示出在图1中也出于简明的目的而未在本文中进一步讨论的其它组件。本领域普通技术人员将理解所包括的但未在图1中示出的附加硬件和软件。
一般,设备100可以以任何形式的数字计算机或移动设备实现。数字计算机可以包括但不限于膝上型电脑、台式电脑、工作站、固定车辆计算机、车载计算机、危险环境计算机、崎岖的(rugged)移动计算机、服务器、刀片式服务器、大型机、其它适当的计算机。移动设备可以包括但不限于蜂窝电话、智能电话、个人数字助理、平板电脑、寻呼机、双向无线电设备、上网本、条形码扫描仪、射频识别(RFID)读取器、智能传感器、追踪设备、体积尺寸确定设备、移动尺寸确定设备、以及其它类似的计算设备。
一般,如所示,图1的移动尺寸确定设备100包括处理系统110,其包括一个或多个处理器111(诸如中央处理单元(CPU)、专用集成电路(ASIC)和/或现场可编程门阵列(FPGA))、存储器控制器112、可以包括软件114的存储器113、以及出于简明起见而未示出的其它组件,诸如总线等。处理系统还可以包括存储装置115,诸如硬盘驱动器或固态驱动器。
处理系统110还包括用于与移动尺寸确定设备100的其它组件进行通信的外围接口116,包括但不限于射频(RF)电路152(诸如Wi-Fi和/或蜂窝通信电路,诸如无线以太网、蓝牙和近场通信(NFC))、用于音频输入组件153(诸如麦克风)和音频输出组件155(诸如扬声器)的音频电路154、一个或多个加速度计156、诸如位置确定组件(诸如全球定位系统(GPS)芯片)之类的一个或多个其它传感器158、以及可以用于智能读卡器或者用于有线连接的一个或多个外部端口160,诸如有线以太网、USB、串行或I2C端口。RF电路152和外部端口160单独地并且共同地构成用于移动尺寸确定设备100的通信接口。处理系统110还连接到用于为移动尺寸确定设备100供电的电力系统组件120,诸如电池或电源单元。处理系统110还连接到控制定时功能的时钟系统组件130。
外围接口116还可以与输入/输出(I/O)子系统140通信,输入/输出(I/O)子系统140包括操作成控制(多个)显示器142的(多个)显示器控制器141。在一些实施例中,(多个)显示器142是触敏显示系统,并且(多个)显示器控制器141进一步操作成处理触敏显示器142上的触摸输入。I/O子系统140还可以包括操作成控制移动尺寸确定设备100上的(多个)键区144的(多个)键区控制器143。I/O子系统140还包括操作成控制一个或多个光学传感器146的(多个)光学传感器控制器145。(多个)光学传感器可以包括但不限于条形码传感器、相机和图像传感器。I/O子系统140还包括操作成控制一个或多个测量传感器148的(多个)测量传感器控制器147。(多个)测量传感器可以包括但不限于点云投影传感器、结构光传感器、立体相机和n观相机。移动尺寸确定设备100的组件可以使用由图1的箭头一般表示的一个或多个总线而互连,并且可以安装在主板(未示出)或某种其它适当的配置上。
图2A是依照所公开的主题的一个实施例的将被显示在移动尺寸确定设备100的显示器142上的图形用户界面(GUI)的示例。图2A是在移动尺寸确定设备寻找用于测量对象的充分测量环境时的阶段期间的代表性GUI。
现在描述图2A的元件。界面202的主窗口具有标题字段204和进度条206以及查看窗口208。查看窗口208当前示出要测量的对象210,例如要载运的盒子。在一些实施例中,要测量的对象210可以以某种方式(诸如以绿色轮廓)在查看窗口208中突显。重叠到查看窗口208上或者与其集成的是引导指示212,其由图2A中的箭头表示,但并不限于此。
引导指示212可以是文本指令、图形指令、图形图标或者其中任何组合。引导指示212提供将移动尺寸确定设备100引导到对于测量对象充分的测量环境的信息。引导指示212基于移动尺寸确定设备100的动态精度水平。
在预处理阶段中,移动尺寸确定设备100根据影响它的所有参数来动态地计算其精度水平。影响精度的任何种类的可测量参数可以包括在用于计算移动尺寸确定设备100的精度水平的模型中。参数的列表包括但不限于移动尺寸确定设备100到所测量的对象的距离、移动尺寸确定设备100中的相机或光学传感器相对于所测量的对象的查看角度、移动尺寸确定设备100的温度、环境光、以及来自移动尺寸确定设备100的一个或多个传感器的数据的质量。单独地并且共同地,这些参数构成用于测量对象的测量环境。在一个实施例中,可以例如在影响精度的参数上使用多变量回归来计算精度水平。
要指出的是,在一些实施例中,移动尺寸确定设备100记录来自传感器的各种原始数据。移动尺寸确定器设备通过硬件和软件将该数据变换成用于计算针对给定测量环境的精度水平的精度参数。
一旦计算出动态精度水平,则其用于将移动尺寸确定设备100引导到对于测量对象充分的测量环境。在一个实施例中,这通过标识具有低精度分度值的精度水平而完成。一般,尺寸确定误差减小,因为移动尺寸确定设备100变得更靠近对象并且具有用于捕获对象的恰当查看角度,由此减小精度分度。精度分度值越低,测量环境越佳。
由引导指示212提供的引导类型的示例包括但不限于缩短到对象的距离、改进相对于对象的查看角度、延迟测量直到目标操作温度、以及改进环境光、调节一个或多个传感器以改进数据的质量。
在一些实施例中,进度条206与其它引导指示212一同出现。如图2A中所示,进度条206与引导指示212协同地工作以将移动尺寸确定设备100引导到充分测量环境,从而在移动尺寸确定设备具有非充分测量环境时示出0%完成的读数,并且在移动尺寸确定设备已经找到充分测量环境时示出100%。
图2B是依照所公开的主题的一个实施例的系统的GUI的示例。图2A是在移动尺寸确定设备已经找到用于测量对象的充分测量环境之后的代表性GUI。
图2B添加了超出图2A的一些附加元件。一旦移动尺寸确定设备已经找到用于测量对象的充分测量环境,则移动尺寸确定设备100显示精度分度字段214。在图2B中,精度分度字段214按每一尺寸示出一个精度分度,但本发明不限于此。还要指出的是,进度条206现在示出100%,从而指示测量环境是充分的。图2A还示出用于响应于移动尺寸确定设备100处的输入而捕获对象的测量结果的捕获图标216。在其它实施例中,捕获图标216可以以使用用于接收输入的GUI设计领域中所理解到的不同元件的各种方式中的任何一种而实现。在其它实施例中,捕获图标216将不是GUI的部分,而将是移动尺寸确定设备100上的硬件按钮,其在使得设备能够捕获测量结果时变得有效。要指出的是,捕获图标216仅在测量环境对于测量对象是充分时可见。还要指出的是,不再示出引导指示212,因为移动尺寸确定设备已经找到用于取得测量结果的充分环境。GUI中的所有这些视觉提示(即,精度分度字段214、完成进度条206、捕获图标216的显示、以及引导指示212的缺失)是测量环境是充分的指示的示例。
要指出的是,因为移动尺寸确定设备100在准许或使得能够实现对象的实际测量之前揭示精度分度,所以移动尺寸确定设备与NIST标准兼容。
图2C是依照所公开的主题的一个实施例的系统的GUI的示例。图2C是在移动尺寸确定设备100已经捕获对象的测量结果之后的代表性GUI。
在一些实施例中,移动尺寸确定器设备100记录投影在所测量的对象上的光的图案的红外(IR)图像。移动尺寸确定器设备通过硬件和软件将该图像变换成关于对象的三维数据。该三维数据被用于导出针对对象的准确测量结果。导出针对对象的准确测量结果的该过程被称为捕获测量结果。捕获测量结果可以由移动尺寸确定设备100在已经自动地或者响应于输入而显示精度分度之后完成。
图2C添加了超出图2A和2B的一些附加元件。因为现在已经捕获了测量结果,所以有可能呈现尺寸字段220。在一些实施例中,提供附加确认图标218以确认已经捕获了测量结果,诸如但不限于在图2C中示出的复选标记图标。
图3A、3B、3C和3D是依照所公开的主题的可替换实施例的系统的GUI的示例。在该实施例中,既不示出对象的尺寸也不示出精度分度,直到测量环境对于测量对象是充分的。然后示出按钮或图标以使得能够进行捕获。
图3A具有与图2A类似的元件。图3A示出可替换实施例的预处理阶段。界面302的主窗口具有标题字段304和进度条306以及查看窗口308。查看窗口308当前示出要测量的对象310,例如要载运的盒子。在一些实施例中,要测量的对象310可以以某种方式(诸如以绿色轮廓)在查看窗口308中突显。重叠到查看窗口308上或者与其集成的是引导指示312,其由图3A中的箭头表示,但并不限于此。如早前所述,引导指示312可以是文本指令、图形指令、图形图标或者其中任何组合。
而且,如早前所述,在后台中,移动尺寸确定设备100动态地计算其精度水平以帮助移动尺寸确定设备100标识对于测量对象充分的测量环境。
图3B类似于图2B。图3B是根据可替换实施例的在移动尺寸确定设备已经找到用于测量对象的充分测量环境之后的代表性GUI。
在图3B中,进度条206现在示出100%,从而指示测量环境是充分的。在该可替换实施例中,提供接受图标322以确认测量环境对于测量对象是充分的。要指出的是,在图3B中既不示出尺寸也不示出精度分度。接受图标322使得能够进行精度水平的显示。
响应于在接受图标322处所接收的输入,将如在图3C中所示的那样显示精度水平。要指出的是,仅示出精度分度字段314。图3C还提供使得能够实现测量结果捕获的捕获图标316。响应于涉及捕获图标316的输入,移动尺寸确定设备将捕获测量结果。在其它实施例中,在捕获之后,记录测量结果可以是自动的。
图3D是在已经捕获了测量结果之后所显示的示例性GUI。现在要指出的是,精度分度字段314和实际尺寸字段320二者都被示出。在一些实施例中,提供附加确认图标318(诸如但不限于图3D中所示的复选标记图标),以确认已经捕获了测量结果。
图4是概示出依照所公开的主题的实施例的用于操作移动尺寸确定设备的过程的流程图。
过程在图4中在步骤400处开始,其后跟着步骤402,在其中进行检查以了解是否已经检测到对移动尺寸确定设备的调节。对移动尺寸确定设备的调节可以是设备本身或者设备的任何组件的随机运动。在一些实施例中,对移动尺寸确定设备的调节表示对应于早前通过引导指示212、312所描述的引导类型的运动。如果尚未检测到调节(路径403),则过程结束(步骤422)。
如果已经检测到调节(步骤405),则移动尺寸确定设备100基于从传感器所接收的信息来导出对应于新测量环境(即,对移动尺寸确定设备的调节之后的测量环境)的新精度参数(步骤404)。移动尺寸确定设备100然后基于一个或多个精度参数来计算精度水平(步骤406)。
移动尺寸确定设备100然后进行检查以了解测量环境对于对象的测量是否充分(步骤408)。如果否(路径407),则显示用于改进测量环境的引导指示(步骤410)。早前描述了用于改进测量环境的指示。这些是引导指示212、312。示例包括但不限于缩短到对象的距离、改进相对于对象的查看角度、延迟测量直到目标操作温度、以及改进环境光、调节一个或多个传感器以改进数据的质量。
如果测量环境对于对象的测量是充分的(路径409),则移动尺寸确定设备显示充分测量环境的指示(步骤412)。如早前所述,充分测量环境的指示包括但不限于:显示精度分度、显示完成进度条、显示捕获图标、以及移除引导指示。
移动尺寸确定设备100然后进行检查以了解是否接收到捕获事件(步骤414)。捕获事件触发对象的实际测量。在一些实施例中,捕获事件自动地发生。在其它实施例中,捕获事件响应于在移动尺寸确定设备100处所接收的输入而发生。
如果未检测到捕获事件(路径411),则移动尺寸确定器设备进行检查以了解是否已经检测到调节(步骤402),如早前所述的。
如果检测到捕获事件(路径413),则实际地测量对象的尺寸(步骤416),显示尺寸(步骤418),并且记录尺寸(步骤420)。在一些实施例中,当显示对象尺寸时,还显示用于每一个尺寸的相关联的精度分度。在其它实施例中,仅显示对象尺寸。过程然后结束(步骤422)。
在该方面中,在图中描述的过程应使如下内容对于本领域普通技术人员清楚:本发明的移动尺寸确定器设备100如何使用动态精度而同时仍然与NIST标准兼容,并且因此可以被认证并用在商业交易中。
为了补充本公开内容,本申请通过引用整体地并入以下共同转让的专利、专利申请公开和专利申请:美国专利号6,832,725;美国专利号7,128,266;
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美国专利号8,559,767;美国专利号8,599,957;
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美国专利号8,571,307;美国专利号8,579,200;
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美国专利号8,616,454;美国专利号8,621,123;
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美国专利号8,628,015;美国专利号8,628,016;
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美国专利号8,698,949;美国专利号8,717,494;
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美国专利号8,789,759;美国专利号8,794,520;
美国专利号8,794,522;美国专利号8,794,526;
美国专利号8,798,367;美国专利号8,807,431;
美国专利号8,807,432;美国专利号8,820,630;
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国际公开号2013/163789;
国际公开号2013/173985;
国际公开号2014/019130;
国际公开号2014/110495;
美国专利申请公开号2008/0185432;
美国专利申请公开号2009/0134221;
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美国专利申请公开号2010/0177707;
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美国专利申请公开号2010/0202702;
美国专利申请公开号2010/0220894;
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美国专利申请公开号2012/0111946;
美国专利申请公开号2012/0138685;
美国专利申请公开号2012/0168511;
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美国专利申请公开号2012/0193423;
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美国专利申请公开号2012/0223141;
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美国专利申请公开号2013/0082104;
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美国专利申请公开号2013/0200158;
美国专利申请公开号2013/0256418;
美国专利申请公开号2013/0257744;
美国专利申请公开号2013/0257759;
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美国专利申请号29/436,337 an Electronic Device, 2012年11月5日提交(Fitch等人);
美国专利申请号13/771,508 an Optical Redirection Adapter, 2013年2月20日提交 (Anderson);
美国专利申请号13/852,097 a System and Method for Capturing andPreserving Vehicle Event Data, 2013年3月28日提交 (Barker等人);
美国专利申请号13/902,110 a System and Method for Display ofInformation Using a Vehicle-Mount Computer, 2013年5月24日提交 (Hollifield);
美国专利申请号13/902,144, a System and Method for Display ofInformation Using a Vehicle-Mount Computer, 2013年5月24日提交 (Chamberlin);
美国专利申请号13/902,242 a System For Providing A ContinuousCommunication Link With A Symbol Reading Device, 2013年5月24日提交 (Smith等人);
美国专利申请号13/912,262 a Method of Error Correction for 3D ImagingDevice, 2013年6月7日提交 (Jovanovski等人);
美国专利申请号13/912,702 a System and Method for Reading Code Symbolsat Long Range Using Source Power Control, 2013年6月7日提交 (Xian等人);
美国专利申请号29/458,405 an Electronic Device, 2013年6月19日提交(Fitch等人);
美国专利申请号13/922,339 a System and Method for Reading Code SymbolsUsing a Variable Field of View, 2013年6月20日提交 (Xian等人);
美国专利申请号13/927,398 a Code Symbol Reading System Having AdaptiveAutofocus, 2013年6月26日提交 (Todeschini);
美国专利申请号13/930,913 a Mobile Device Having an Improved UserInterface for Reading Code Symbols, 2013年6月28日提交 (Gelay等人);
美国专利申请号29/459,620 an Electronic Device Enclosure, 2013年7月2日提交 (London等人);
美国专利申请号29/459,681 an Electronic Device Enclosure, 2013年7月2日提交 (Chaney等人);
美国专利申请号13/933,415 an Electronic Device Case, 2013年7月2日提交(London等人);
美国专利申请号29/459,785 a Scanner and Charging Base, 2013年7月3日提交 (Fitch等人);
美国专利申请号29/459,823 a Scanner, 2013年7月3日提交 (Zhou等人);
美国专利申请号13/947,296 a System and Method for Selectively ReadingCode Symbols, 2013年7月22日提交 (Rueblinger等人);
美国专利申请号13/950,544 a Code Symbol Reading System HavingAdjustable Object Detection, 2013年7月25日提交 (Jiang);
美国专利申请号13/961,408 a Method for Manufacturing Laser Scanners,2013年8月7日提交 (Saber等人);
美国专利申请号14/018,729 a Method for Operating a Laser Scanner, 2013年9月5日提交 (Feng等人);
美国专利申请号14/019,616 a Device Having Light Source to ReduceSurface Pathogens, 2013年9月6日提交 (Todeschini);
美国专利申请号14/023,762 a Handheld Indicia Reader Having LockingEndcap, 2013年9月11日提交 (Gannon);
美国专利申请号14/035,474 Augmented-Reality Signature Capture, 2013年9月24日提交 (Todeschini);
美国专利申请号29/468,118 an Electronic Device Case, 2013年9月26日提交(Oberpriller等人);
美国专利申请号14/055,234 Dimensioning System, 2013年10月16日提交(Fletcher);
美国专利申请号14/053,314 Indicia Reader, 2013年10月14日提交 (Huck);
美国专利申请号14/065,768 Hybrid System and Method for ReadingIndicia, 2013年10月29日提交 (Meier等人);
美国专利申请号14/074,746 Self-Checkout Shopping System, 2013年11月8日提交 (Hejl等人);
美国专利申请号14/074,787 Method and System for Configuring MobileDevices via NFC Technology, 2013年11月8日提交 (Smith等人);
美国专利申请号14/087,190 Optimal Range Indicators for Bar CodeValidation, 2013年11月22日提交 (Hejl);
美国专利申请号14/094,087 Method and System for CommunicatingInformation in an Digital Signal, 2013年12月2日提交 (Peake等人);
美国专利申请号14/101,965 High Dynamic-Range Indicia Reading System,2013年12月10日提交 (Xian);
美国专利申请号14/150,393 Indicia-reader Having Unitary ConstructionScanner, 2014年1月8日提交 (Colavito等人);
美国专利申请号14/154,207 Laser Barcode Scanner, 2014年1月14日提交(Hou等人);
美国专利申请号14/165,980 System and Method for Measuring IrregularObjects with a Single Camera, 2014年1月28日提交 (Li等人);
美国专利申请号14/166,103 Indicia Reading Terminal Including OpticalFilter, 2014年1月28日提交 (Lu等人);
美国专利申请号14/200,405 Indicia Reader for Size-LimitedApplications, 2014年3月7日提交 (Feng等人);
美国专利申请号14/231,898 Hand-Mounted Indicia-Reading Device withFinger Motion Triggering, 2014年4月1日提交 (Van Horn等人);
美国专利申请号14/250,923 Reading Apparatus Having Partial FrameOperating Mode, 2014年4月11日提交 (Deng等人);
美国专利申请号14/257,174 Imaging Terminal Having Data Compression,2014年4月21日提交 (Barber等人);
美国专利申请号14/257,364 Docking System and Method Using Near FieldCommunication, 2014年4月21日提交 (Showering);
美国专利申请号14/264,173 Autofocus Lens System for Indicia Readers,2014年4月29日提交 (Ackley等人);
美国专利申请号14/274,858 Mobile Printer with Optional BatteryAccessory, 2014年5月12日提交 (Marty等人);
美国专利申请号14/277,337 MULTIPURPOSE OPTICAL READER, 2014年5月14日提交 (Jovanovski等人);
美国专利申请号14/283,282 TERMINAL HAVING ILLUMINATION AND FOCUSCONTROL, 2014年5月21日提交 (Liu等人);
美国专利申请号14/300,276 METHOD AND SYSTEM FOR CONSIDERINGINFORMATION ABOUT AN EXPECTED RESPONSE WHEN PERFORMING SPEECH RECOGNITION,2014年6月10日提交 (Braho等人);
美国专利申请号14/305,153 INDICIA READING SYSTEM EMPLOYING DIGITALGAIN CONTROL, 2014年6月16日提交 (Xian等人);
美国专利申请号14/310,226 AUTOFOCUSING OPTICAL IMAGING DEVICE, 2014年6月20日提交 (Koziol等人);
美国专利申请号14/327,722 CUSTOMER FACING IMAGING SYSTEMS AND METHODSFOR OBTAINING IMAGES, 2014年7月10日提交 (Oberpriller et al,);
美国专利申请号14/327,827 a MOBILE-PHONE ADAPTER FOR ELECTRONICTRANSACTIONS, 2014年7月10日提交 (Hejl);
美国专利申请号14/329,303 CELL PHONE READING MODE USING IMAGE TIMER,2014年7月11日提交 (Coyle);
美国专利申请号14/333,588 SYMBOL READING SYSTEM WITH INTEGRATED SCALEBASE, 2014年7月17日提交 (Barten);
美国专利申请号14/334,934 a SYSTEM AND METHOD FOR INDICIAVERIFICATION, 2014年7月18日提交 (Hejl);
美国专利申请号14/336,188 METHOD OF AND SYSTEM FOR DETECTING OBJECTWEIGHING INTERFERENCES, 2014年7月21日提交 (Amundsen等人);
美国专利申请号14/339,708 LASER SCANNING CODE SYMBOL READING SYSTEM,2014年7月24日提交 (Xian等人);
美国专利申请号14/340,627 an AXIALLY REINFORCED FLEXIBLE SCAN ELEMENT,2014年7月25日提交 (Rueblinger等人);
美国专利申请号14/340,716 an OPTICAL IMAGER AND METHOD FOR CORRELATINGA MEDICATION PACKAGE WITH A PATIENT, 2014年7月25日提交 (Ellis);
美国专利申请号14/342,544 Imaging Based Barcode Scanner Engine withMultiple Elements Supported on a Common Printed Circuit Board, 2014年3月4日提交 (Liu等人);
美国专利申请号14/345,735 Optical Indicia Reading Terminal withCombined Illumination, 2014年3月19日提交 (Ouyang);
美国专利申请号14/336,188 METHOD OF AND SYSTEM FOR DETECTING OBJECTWEIGHING INTERFERENCES, 2014年7月21日提交 (Amundsen等人);
美国专利申请号14/355,613 Optical Indicia Reading Terminal with ColorImage Sensor, 2014年5月1日提交 (Lu等人);
美国专利申请号14/370,237 WEB-BASED SCAN-TASK ENABLED SYSTEM ANDMETHOD OF AND APPARATUS FOR DEVELOPING AND DEPLOYING THE SAME ON A CLIENT-SERVER NETWORK, 07/02/2014提交 (Chen等人);
美国专利申请号14/370,267 INDUSTRIAL DESIGN FOR CONSUMER DEVICE BASEDSCANNING AND MOBILITY, 2014年7月2日提交 (Ma等人);
美国专利申请号14/376,472, an ENCODED INFORMATION READING TERMINALINCLUDING HTTP SERVER, 08-04-2014提交 (Lu);
美国专利申请号14/379,057 METHOD OF USING CAMERA SENSOR INTERFACE TOTRANSFER MULTIPLE CHANNELS OF SCAN DATA USING AN IMAGE FORMAT, 2014年8月15日提交 (Wang等人);
美国专利申请号14/452,697 INTERACTIVE INDICIA READER, , 2014年8月6日提交 (Todeschini);
美国专利申请号14/453,019 DIMENSIONING SYSTEM WITH GUIDED ALIGNMENT,2014年8月6日提交 (Li等人);
美国专利申请号14/460,387 APPARATUS FOR DISPLAYING BAR CODES FROMLIGHT EMITTING DISPLAY SURFACES, 2014年8月15日提交 (Van Horn等人);
美国专利申请号14/460,829 ENCODED INFORMATION READING TERMINAL WITHWIRELESS PATH SELECTON CAPABILITY, 2014年8月15日提交 (Wang等人);
美国专利申请号14/462,801 MOBILE COMPUTING DEVICE WITH DATA COGNITIONSOFTWARE, 2014年8月19日提交 (Todeschini等人);
美国专利申请号14/446,387 INDICIA READING TERMINAL PROCESSINGPLURALITY OF FRAMES OF IMAGE DATA RESPONSIVELY TO TRIGGER SIGNAL ACTIVATION,2014年7月30日提交 (Wang等人);
美国专利申请号14/446,391 MULTIFUNCTION POINT OF SALE APPARATUS WITHOPTICAL SIGNATURE CAPTURE, 2014年7月30日提交 (Good等人);
美国专利申请号29/486,759 an Imaging Terminal, 2014年4月2日提交(Oberpriller等人);
美国专利申请号29/492,903 an INDICIA SCANNER, 2014年6月4日提交 (Zhou等人);以及
美国专利申请号29/494,725 an IN-COUNTER BARCODE SCANNER, 2014年6月24日提交 (Oberpriller等人)。
在说明书和/或附图中,已经公开了本发明的典型实施例。本发明不限于这样的示例性实施例。术语“和/或”的使用包括相关联的所列项目中的一个或多个的任何和所有组合。附图是示意性表示并且因此未必按照比例绘制。除非以其它方式指出,否则具体术语以通用且描述性意义使用并且不用于限制的目的。
Claims (14)
1.一种移动尺寸确定设备,包括:
显示器;
非易失性存储装置;
一个或多个传感器,用于捕获关于对象的信息;
输入子系统;
一个或多个处理器;以及
包含指令的存储器,所述指令可由一个或多个处理器执行,由此设备可操作成:
基于从一个或多个传感器所接收的所述信息针对所述对象的测量环境导出一个或多个精度参数;
基于一个或多个精度参数而计算精度水平;
确定精度水平是否对应于充分测量环境;
如果精度水平对应于充分测量环境,则在显示器上显示测量环境是充分的指示;
在显示器上显示使得能够实现测量结果捕获的捕获图标;
响应于在捕获图标处所接收的输入而捕获测量结果;
在显示器上显示对象的尺寸;以及
记录对象的尺寸。
2.权利要求1所述的设备,其中精度水平是如由美国国家标准技术研究所NIST标准所限定的精度分度。
3.权利要求1所述的设备,其中精度参数包括包含以下各项的组中的至少一个:到对象的距离、相对于对象的查看角度、温度、环境光、或来自一个或多个传感器的数据的质量。
4.权利要求1所述的设备,其中一个或多个传感器包括包含以下各项的组中的至少一个:光学传感器或测量传感器。
5.权利要求4所述的设备,其中光学传感器选自包含以下各项的组:条形码传感器、相机和图像传感器。
6.权利要求4所述的设备,其中测量传感器选自包含以下各项的组:点云投影、结构光、以及立体相机和n观相机。
7.权利要求2所述的设备,其中充分测量环境是其中精度分度具有低值的环境。
8.权利要求1所述的设备,其中在显示器上显示测量环境是充分的指示包括包含以下各项的组中的至少一个:显示精度分度、显示使得能够实现测量结果捕获的图标、移除用于改进测量环境的指示、显示完成进度条、或显示确认图标。
9.权利要求1所述的设备,其中在显示器上显示对象的尺寸包括显示对象的尺寸以及对应的精度分度。
10.权利要求1所述的设备,其中基于精度参数计算精度水平包括在精度参数上运行多变量回归。
11.权利要求1所述的设备,其中对象的尺寸和精度水平存储在非易失性存储装置中。
12.权利要求11所述的设备,其中设备进一步可操作成:
确定之前已经测量了所测量的对象;以及
从非易失性存储装置检索对象的尺寸和精度水平;
在显示器上显示来自非易失性存储装置的对象的尺寸和精度水平;以及
记录来自非易失性存储装置的对象的尺寸和精度水平。
13.权利要求1所述的设备,其中设备进一步可操作成:
如果精度水平不对应于充分测量环境,则提供用于改进测量环境的指示。
14.权利要求13所述的设备,其中用于改进测量环境的指示包括包含以下各项的组中的至少一个:文本指令、图形指令、或图形图标。
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US15/146,084 US10393506B2 (en) | 2015-07-15 | 2016-05-04 | Method for a mobile dimensioning device to use a dynamic accuracy compatible with NIST standard |
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CN106352804B true CN106352804B (zh) | 2020-11-17 |
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