https://scholars.lib.ntu.edu.tw/handle/123456789/174511
標題: | 支援OpenCV函式庫視訊信號處理器之架構設計與實作 Design and Implementation of Vision Signal Processor with OpenCV Library Support |
作者: | 林家華 Lin, Chia-Hua |
關鍵字: | 視訊信號;處理器;臉部偵測;vision;processor;opencv;face detection | 公開日期: | 2008 | 摘要: | 本篇論文中提出一個高效率的視覺信號處理器架構設計並支援OpenCV 函式庫,晶片運算輸出為64GOPS,功率消耗86.5mW,在UMC 90nm Logic&Mixed Mode 1P9Mow-K 製程下,面積為2.75mm x 2.75mm。年來,視訊分析技術在視訊應用上面扮演著越來越重要的角色,例如監視系、健康醫療照護、智慧型車輛駕駛系統等等,我們相信智慧型視訊分析技術會未來的發展趨勢。ntel OpenCV 函式庫近期在相關研究領域上相當受歡迎,並創造出許多成功的用。本篇論文所提出的硬體架構可以提供一對一的函式轉換,讓原本在電腦端行的函式直接轉移到嵌入式系統中,這樣的硬體不但可以節省演算法的開發時,更可以加速產品上市的時間。態學上的運算是電腦視覺中最常被使用的函式,通常是許多影像辨識的前處理程。實驗結果顯示我們所提出的架構可以提供高運算輸出及低功率消耗,對於張1024 x 768 的灰階影像,運算速度可達每秒兩百張影像,同時,相較於目前見的其他影像處理器,此架構僅需相當小的面積。了型態學的運算之外,快速的物件偵測是電腦視覺領域上的另一個挑戰。ViolaJones 提出了一個快速偵測物件的演算法,被OpenCV 採用,我們也將此演法針對我們的硬體作最佳化的設計,我們採用CMU+MIT 的臉部偵測的標準試圖樣來測試我們修改過後的演算法, 119 張影像中含有513 張臉,實驗結顯示我們的偵測率為87.3%,運算速度在320x240 的影像大小下可達每秒10。 An efficient architecture design of vision signal processor with OpenCV library supports presented in this thesis. It is a 64GOPS, 86.5mW vision processor which is implementedn a 2.75mm?2.75mm die in a UMC 90nm Logic&Mixed-Mode 1P9M Low-Krocess.n the resent decades, video analysis technology plays more and more important rolen many vision applications, such as surveillance system, healthcare, intelligent vehicleystem and so on. It is believed that intelligent video analysis technology will must behe trends of development.owadays, Intel OpenCV library is popular in the research domain and creates lot’sf successful applications. Our hardware can provide one to one function mapping fromC OpenCV library to embedded system. With this hardware, the implementation timean be saved and speed up the product become available in the market.ne of the most frequently used operations in image recognitions morphologicalrocessing, which is often adopted for pre-processing of various applications based onmage recognition. Experimental result shows our proposed architecture performs highomputation throughput and low power consumption. It can process 1024?768 8-bitray level image with more than 200 frames per second and the area is quite smallompared to state-of-the-arts.obust and rapid object detection is the other challenge in the field of computerision. A object detection algorithm proposed by Viola and Joses is implemented inur design. We optimize the algorithm to our hardware with low performance drop.etection rate for CMU+MIT test database which consists of 119 images with 513abeled frontal faces is 87.3%. The processing speed is 10 frames per second with20?240 8-bit gray level image |
URI: | http://ntur.lib.ntu.edu.tw//handle/246246/189034 |
顯示於: | 電子工程學研究所 |
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ntu-97-R95943021-1.pdf | 23.32 kB | Adobe PDF | 檢視/開啟 |
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