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Memristive Threshold Logic Circuit Design of Fast Moving Object Detection

机译:快速移动目标检测的忆阻门限逻辑电路设计

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Real-time detection of moving objects involves memorization of features in the template image and their comparison with those in the test image. At high sampling rates, such techniques face the problems of high algorithmic complexity and component delays. We present a new resistive switching-based threshold logic which encodes the pixels of a template image. The cell comprises a voltage divider circuit that programs the resistances of the arranged in a single-node threshold logic network, and the output is encoded as a binary value by using a CMOS inverter gate. When a test image is applied to the template-programmed cell, a mismatch in the respective pixels is seen as a change in the output voltage of the cell. The proposed cell when compared with CMOS equivalent implementation shows improved performance in area, leakage power, power dissipation, and delay.
机译:实时检测运动对象涉及记忆模板图像中的特征,并将其与测试图像中的特征进行比较。在高采样率下,此类技术面临算法复杂度高和组件延迟的问题。我们提出了一种新的基于电阻切换的阈值逻辑,该逻辑对模板图像的像素进行编码。该单元包括分压器电路,该分压器电路对布置在单节点阈值逻辑网络中的电阻进行编程,并且通过使用CMOS反相器门将输出编码为二进制值。当将测试图像施加到模板编程的单元时,各个像素中的失配被视为单元的输出电压的变化。与CMOS等效实现方案相比,拟议中的单元在面积,泄漏功率,功耗和延迟方面表现出更高的性能。

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