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FPGA-Based HD Camera System for the Micropositioning of Biomedical Micro-Objects Using a Contactless Micro-Conveyor

机译:基于FPGA的高清摄像头系统,用于使用非接触式微型传送带对生物医学微物体进行微定位

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With recent advancements, micro-object contactless conveyers are becoming an essential part of the biomedical sector. They help avoid any infection and damage that can occur due to external contact. In this context, a smart micro-conveyor is devised. It is a Field Programmable Gate Array (FPGA)-based system that employs a smart surface for conveyance along with an OmniVision complementary metal-oxide-semiconductor (CMOS) HD camera for micro-object position detection and tracking. A specific FPGA-based hardware design and VHSIC (Very High Speed Integrated Circuit) Hardware Description Language (VHDL) implementation are realized. It is done without employing any Nios processor or System on a Programmable Chip (SOPC) builder based Central Processing Unit (CPU) core. It keeps the system efficient in terms of resource utilization and power consumption. The micro-object positioning status is captured with an embedded FPGA-based camera driver and it is communicated to the Image Processing, Decision Making and Command (IPDC) module. The IPDC is programmed in C++ and can run on a Personal Computer (PC) or on any appropriate embedded system. The IPDC decisions are sent back to the FPGA, which pilots the smart surface accordingly. In this way, an automated closed-loop system is employed to convey the micro-object towards a desired location. The devised system architecture and implementation principle is described. Its functionality is also verified. Results have confirmed the proper functionality of the developed system, along with its outperformance compared to other solutions.
机译:随着最近的进步,微物体非接触式传送带正成为生物医学领域的重要组成部分。它们有助于避免由于外部接触而引起的任何感染和损坏。在这种情况下,设计了一种智能微型输送机。它是基于现场可编程门阵列(FPGA)的系统,该系统采用智能表面进行传输,并使用OmniVision互补金属氧化物半导体(CMOS)HD摄像机进行微对象位置检测和跟踪。实现了基于FPGA的特定硬件设计和VHSIC(超高速集成电路)硬件描述语言(VHDL)实现。无需使用任何Nios处理器或基于可编程芯片(SOPC)构建器的中央处理器(CPU)内核即可完成此操作。在资源利用率和功耗方面,它使系统保持高效。微型对象的定位状态由基于嵌入式FPGA的摄像头驱动程序捕获,并传达给图像处理,决策和命令(IPDC)模块。 IPDC用C ++编程,可以在个人计算机(PC)或任何适当的嵌入式系统上运行。 IPDC决策将被发送回FPGA,FPGA会相应地引导智能表面。以这种方式,采用了自动闭环系统将微物体朝着期望的位置传送。描述了设计的系统架构和实现原理。其功能也已得到验证。结果证实了已开发系统的正常功能以及与其他解决方案相比的出色性能。

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