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    • 2. 发明公开
    • HIGH-SPEED AUTOMATIC MULTI-OBJECT TRACKING METHOD AND SYSTEM WITH KERNELIZED CORRELATION FILTERS
    • 具有内核相关滤波器的高速自动多目标跟踪方法和系统
    • EP3183690A1
    • 2017-06-28
    • EP15833258.5
    • 2015-07-28
    • Zhejiang Shenghui Lighting Co., Ltd
    • LI, MaolinSHEN, Jinxiang
    • G06K9/66
    • G06T7/20G06K9/00711G06K9/00718G06K9/00765G06K9/6256G06K9/6269G06K9/66G06T7/248G06T2207/10016G06T2207/20081G06T2207/30232G06T2207/30241
    • A high-speed automatic multi-object tracking method with kernelized correlation filters is provided. The method includes obtaining an image frame from a plurality of image frames in a video, extracting a foreground object sequence from the obtained image frame, and determining similarity between each foreground object of the extracted foreground object sequence and a tracked object. The method also includes calculating HOG features of the foreground objects with a lower similarity, obtaining training samples for each of the foreground objects with the lower similarity using a circular matrix, obtaining a classifier via a kernel method accelerated by FFTW, and obtaining tracking points using a sparse optical flow. Further, the method includes detecting object matching responses using a detection response function, performing multi-scale analysis for the object based on an optical flow method, and processing a next image frame of the plurality of image frames in the video until the video ends.
    • 提供了具有核化相关滤波器的高速自动多目标跟踪方法。 该方法包括从视频中的多个图像帧中获得图像帧,从获得的图像帧中提取前景对象序列,并且确定所提取的前景对象序列的每个前景对象与被跟踪对象之间的相似性。 该方法还包括计算具有较低相似度的前景对象的HOG特征,使用圆形矩阵获得每个具有较低相似度的前景对象的训练样本,通过FFTW加速的内核方法获得分类器,以及使用FFTW加速获得跟踪点 稀疏的光流。 此外,该方法包括使用检测响应函数来检测对象匹配响应,基于光流法对对象执行多尺度分析,并且处理视频中的多个图像帧中的下一图像帧直到视频结束。
    • 3. 发明公开
    • LED POWER CIRCUIT USING DISCRETE COMPONENTS AND CONFIGURATION METHOD
    • LED-STROMSCHALTUNG MIT DISKRETEN KOMPONENTEN UND KONFIGURATIONSVERFAHREN
    • EP3058796A1
    • 2016-08-24
    • EP14885359.1
    • 2014-10-17
    • Zhejiang Shenghui Lighting Co., Ltd
    • WAN, YehuaSHEN, JinxiangJIN, Changzhou
    • H05B37/02
    • H05B33/0812H05B33/0815H05B33/0845Y02B20/346
    • A power circuit for an LED lighting device usingdiscrete components is provided. The power circuit includes a filtering unit configured to filter an inputted AC and a rectifying unit configured to convert an AC to a DC. The power circuit also includes a transformer connected to the rectifying unit. Further, the power circuit includes a first switch and a second switch that are field effect transistor s, where in a grid electrode of the first switch is connected to a drain electrode of the second switch. Further, a drain electrode of the first switch is connected to the transformer. A source electrode of the first switch is connected to a source electrode of the second switch through a detection resistor. A grid electrode of the second switch is connected to the source electrode of the first switch through a thermistor.
    • 提供了一种使用分立元件的LED照明装置的电源电路。 电源电路包括被配置为对输入的AC进行滤波的滤波单元和被配置为将AC转换为DC的整流单元。 电源电路还包括连接到整流单元的变压器。 此外,电源电路包括作为场效应晶体管的第一开关和第二开关,其中第一开关的栅电极连接到第二开关的漏电极。 此外,第一开关的漏电极连接到变压器。 第一开关的源电极通过检测电阻器连接到第二开关的源电极。 第二开关的栅极通过热敏电阻连接到第一开关的源电极。
    • 4. 发明公开
    • LED LIGHTING DEVICE AND LED LIGHTING CONTROL SYSTEM
    • LED-BELEUCHTUNGSVORRICHTUNG LED LED球泡灯
    • EP2986084A1
    • 2016-02-17
    • EP13881875.2
    • 2013-05-31
    • Zhejiang Shenghui Lighting Co., Ltd
    • RUAN, JiayangSUN, ChaoqunSHEN, Jinxiang
    • H05B37/00
    • H05B33/0845H05B37/0236H05B37/0272Y02B20/48
    • Provided are an LED lighting device and an LED lighting control system. The LED lighting device is used for communicating with an intelligent terminal and comprises an LED drive and power supply unit, a controller unit, a microphone module, a wireless communication module, and an LED light source component. The LED lighting control system comprises an intelligent terminal, an intelligent household appliance, and at least one LED lighting device described above. A voice recognition module and a wireless transceiver module are arranged in the intelligent terminal, and a wireless receiving module in network connection to the intelligent terminal is arranged in the intelligent household appliance. A user sends a sound instruction to the LED lighting device, the LED lighting device collects an audio signal, the audio signal is processed and then sent to the intelligent terminal, and the intelligent terminal recognizes and processes the audio signal and then sends the audio signal to a corresponding intelligent household appliance in network connection to the intelligent terminal, so as to control a state of the intelligent household appliance. With the LED lighting device and the LED lighting control system, current wiring does not need to be changed, mounting is simple and convenient, and using is convenient.
    • 提供了LED照明装置和LED照明控制系统。 LED照明装置用于与智能终端通信,包括LED驱动器和电源单元,控制器单元,麦克风模块,无线通信模块和LED光源组件。 LED照明控制系统包括智能终端,智能家用电器以及至少一个上述的LED照明装置。 在智能终端中设置语音识别模块和无线收发模块,智能家电中设置有与智能终端网络连接的无线接收模块。 用户向LED照明装置发送声音指示,LED照明装置收集音频信号,处理音频信号,然后发送到智能终端,智能终端识别并处理音频信号,然后发送音频信号 到相应的智能家电网络连接到智能终端,从而控制智能家电的状态。 随着LED照明装置和LED照明控制系统,电流接线不需要改变,安装简单方便,使用方便。
    • 8. 发明公开
    • FAST OBJECT DETECTION METHOD BASED ON DEFORMABLE PART MODEL (DPM)
    • 基于可变形部件模型(DPM)的快速目标检测方法
    • EP3183691A1
    • 2017-06-28
    • EP15833530.7
    • 2015-07-28
    • Zhejiang Shenghui Lighting Co., Ltd
    • LI, MaolinSHEN, Jinxiang
    • G06K9/66
    • G06K9/627G06K9/00G06K9/00718G06K9/00765G06K9/4642G06K9/468G06K9/52G06K9/6269G06K2009/4666G06T7/73
    • A fast object detection method based on deformable part model (DPM) is provided. The method includes importing a trained classifier for object detection, receiving an image frame from a plurality of frames in a video captured by a camera, and identifying regions possibly containing at least one object via objectness measure based on Binarized Normed Gradients (BING). The method also includes calculating Histogram of Oriented Gradients (HOG) feature pyramid of the image frame, performing DPM detection for the identified regions possibly containing the at least one object, and labeling the at least one detected object using at least one rectangle box via non-maximum suppression (NMS). Further, the method includes processing a next frame from the plurality of frames in the captured video until the video ends and outputting object detection results.
    • 提出一种基于变形部件模型(DPM)的快速目标检测方法。 该方法包括导入用于对象检测的训练分类器,从由摄像机捕获的视频中的多个帧中接收图像帧,并且基于二值化赋范梯度(BING)经由对象度量来识别可能包含至少一个对象的区域。 该方法还包括计算图像帧的定向梯度直方图(HOG)特征金字塔,对可能包含至少一个对象的识别区域执行DPM检测,以及通过非标记至少一个矩形框标记至少一个检测对象 - 最大抑制(NMS)。 此外,该方法包括处理来自所捕获的视频中的多个帧的下一帧,直到视频结束并且输出对象检测结果。
    • 10. 发明公开
    • ELECTRICAL CIRCUIT AND METHOD FOR MEASURING POWER CONSUMPTION OF LED LIGHTING DEVICE
    • 电路和方法用于测量LED照明装置用的电源使用
    • EP2962121A1
    • 2016-01-06
    • EP14861094.2
    • 2014-05-05
    • Zhejiang Shenghui Lighting Co., Ltd
    • SUN, ChaoqunSHEN, Jinxiang
    • G01R31/44G01R22/06G01R21/06
    • G01R22/063G01R21/06G01R31/44H05B33/089H05B33/0893H05B37/0272H05B37/03
    • Embodiments consistent with the present disclosure provide an electrical circuit and a method for measuring the power and power consumption of an LED lighting device in real time. The circuit includes a controlling unit configured to process data; a display unit configured to display data received from the controlling unit and other components; a power supply and driving unit configured to supply power; an LED light source; and a RF unit configured to send data to remote terminals. The electrical circuit further includes an input power sampling unit, an output voltage sampling unit, and an output current sampling unit, which are configured to capture the real time input voltage, output voltage, and output current data respectively. Further, the controlling unit may determine the power and power consumption of the LED lighting device by using the received real time voltage and current data measurements, and referring to the stored input voltage-efficiency curves.
    • 实施例中与本公开一致的提供给电电路和用于测量的LED照明装置的功率和功率消耗在实时的方法。 该电路包括被配置为处理数据的控制单元; 配置成显示从所述控制单元和其他部件接收到的数据的显示单元; 电源并且被配置为供给电力驱动单元; 到LED光源; 和RF单元,用于将数据发送到远程终端。 该电路分别对输出电流采样单元,其被配置成捕获实时输入电压,输出电压和输出电流数据包括在另外的输入功率采样单元输出电压采样单元,和。 此外,控制单元可确定矿通过使用接收到的实时的电压和电流的测量数据,并参照存储的输入电压 - 效率曲线的LED照明装置的功率和功率消耗。