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Quantum-Dot Cellular Automata Design for Median Filtering and Mathematical Morphology Operations on Binary Images

机译:用于二进制图像中值滤波和数学形态学运算的量子点元胞自动机设计

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The continuing development of smaller electronic devices into the nanometer regime offers great possibilities of highly parallel computing systems, as it allows to reduce power consumption and device sizes and to increase operating speed. Quantum-dot Cellular Automata (QCA) has been proposed as an alternative for nanoelectronic devices and introduces a new opportunity for the design of highly parallel algorithms and architectures. Its benefits are the fast speed, very small size, high density and low energy consumption. These advantages can be very useful for various real time image processing applications. Complex image processing algorithms include in many cases the well-known binary median filter and mathematical morphology operations such as dilation and erosion. In this paper we propose and simulate two innovative QCA circuits which implement the dilation and the erosion.
机译:小型电子设备不断发展为纳米技术,为高度并行计算系统提供了极大的可能性,因为它可以减少功耗和设备尺寸并提高运行速度。量子点元胞自动机(QCA)已被提出作为纳米电子设备的替代品,并为高度并行算法和体系结构的设计提供了新的机遇。它的优点是速度快,体积小,密度高和能耗低。这些优点对于各种实时图像处理应用程序非常有用。复杂的图像处理算法在许多情况下包括众所周知的二进制中值滤波器和数学形态学运算,例如膨胀和腐蚀。在本文中,我们提出并仿真了两个创新的QCA电路,它们实现了膨胀和腐蚀。

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