2013Unpublished venueRequires access

Hardware accelerator implementation on FPGA for video processing

Kenneth Fatt Kong Wong, Vooi-Voon Yap, Teh Peh Chiong

Open publisher page 5 citations

Abstract

Intelligent video surveillance for security purposes requires real-time performance. Such performance requires large amount of resources, including bandwidth, processing power and memory. In addition, the deployment of such system requires an embedded solution with low cost and power. However, embedded systems have limited resource for processing. The advancement of Field Programmable Gate Array (FPGA) enables development and implementation of a system with reconfiguration capability. Besides, it also offers competitive cost in comparison to an Application Specific Integrated Circuit (ASIC) deployment of the system. In recent years there is an increase research in the effort to implement video surveillance and processing system using FPGA. The computational heavy processing of streaming frames in video processing is implemented using hardware accelerator, a dedicated processing unit for the video processing algorithm. Majority of the research on video processing hardware accelerator are to develop a dedicated hardware implementation of the video processing algorithm. This research aims to investigate and propose a general model from hardware accelerator development which has the capability to accommodate different video processing applications.

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What this paper is about

Intelligent video surveillance for security purposes requires real-time performance. Such performance requires large amount of resources, including bandwidth, processing power and memory. In addition, the deployment of such system requires an embedded solution with low cost and power. However, embedded systems have limited resource for processing. The advancement of Field Programmable Gate Array (FPGA) enables development and implementation of a system with reconfiguration capability. Besides, it also offers competitive cost in comparison to an Application Specific Integrated Circuit (ASIC) deployment of the system. In recent years there is an increase research in the effort to implement video surveillance and processing system using FPGA. The computational heavy processing of streaming frames in video processing is implemented using hardware accelerator, a dedicated processing unit for the video processing algorithm. Majority of the research on video processing hardware accelerator are to develop a dedicated hardware implementation of the video processing algorithm. This research aims to investigate and propose a general model from hardware accelerator development which has the capability to accommodate different video processing applications.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Intelligent video surveillance for security purposes requires real-time performance. Such performance requires large amount of resources, including bandwidth, processing power and memory. In addition, the deployment of such system requires an embedded solution with low cost and power. However, embedded systems have limited resource for processing. The advancement of Field Programmable Gate Array (FPGA) enables development and implementation of a system with reconfiguration capability. Besides, it also offers competitive cost in comparison to an Application Specific Integrated Circuit (ASIC) deployment of the system. In recent years there is an increase research in the effort to implement video surveillance and processing system using FPGA. The computational heavy processing of streaming frames in video processing is implemented using hardware accelerator, a dedicated processing unit for the video processing algorithm. Majority of the research on video processing hardware accelerator are to develop a dedicated hardware implementation of the video processing algorithm. This research aims to investigate and propose a general model from hardware accelerator development which has the capability to accommodate different video processing applications.

Key concepts: Computer science, Field-programmable gate array, Video processing, Application-specific integrated circuit, Embedded system, Control reconfiguration, Computer hardware, Software deployment

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