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Showing 1 to 8 of 8 for “"Low power computing"”.

  1. Resource-Aware Distributed Particle Filtering for Cluster-Based Object Tracking in Wireless Camera Networks

    <p>The proliferation of miniaturized low-power computing devices, advances in wireless communications, and the availability of inexpensive imaging sensors have enabled the development of wireless camera networks (WCN). In this dissertation, we consider the problem of real-time object tracking with …

    purdue-thes Repository record for Resource-Aware Distributed Particle Filtering for Cluster-Based Object Tracking in Wireless Camera Networks (opens in a new tab)

  2. Toward Integrating Intelligence Into Everything Around Us

    … significant advances in miniaturization and low-power computing, true ambient intelligence has remained elusive, hindered by a fundamental challenge: current intelligent systems require substantial energy, complex hardware, and frequent maintenance, making widespread deployment impractical. …

    maryland Repository record for Toward Integrating Intelligence Into Everything Around Us (opens in a new tab)

  3. Magnetic logic circuits with high bit resolution for hardware acceleration

    … ever-increasing demand for high-performance and low-power computing warrants an investigation of technologies beyond conventional digital transistor circuits. We explore a logic device based on magnetic domain walls, which are electrically movable boundaries between oppositely magnetized domains …

    mit Repository record for Magnetic logic circuits with high bit resolution for hardware acceleration (opens in a new tab)

  4. Multi-functional Hybrid Gating Silicon Nanowire Field-effect Transistors

    Enormous demands for fast and low-power computing and memory building blocks for consumer electronics, such as smartphones or tablets, have led to the emergence of silicon nanowire transistors a decade ago. Along with the Si-based nanotechnology, the silicon compatible optical and chemical sensing …

    qucosa-diss

  5. Nanostructured magnetic materials for integrated magnonic devices

    … in these thin films, showing a transition from low coercivity non-ES loops to staircase-ES loops with multiple coercivities in thicker films. The First Order Reversal Curve (FORC) distributions demonstrate various reversal mechanisms within the samples, confirming the transition between non-ES …

    cork Repository record for Nanostructured magnetic materials for integrated magnonic devices (opens in a new tab)

  6. Efficient and Scalable Computing for Resource-Constrained Cyber-Physical Systems: A Layered Approach

    <p>With the evolution of computing and communication technology, cyber-physical systems such as self-driving cars, unmanned aerial vehicles, and mobile cognitive robots are achieving increasing levels of multifunctionality and miniaturization, enabling them to execute versatile tasks in a …

    wustl Repository record for Efficient and Scalable Computing for Resource-Constrained Cyber-Physical Systems: A Layered Approach (opens in a new tab)

  7. Compilation Techniques for Reconfigurable Analog Devices

    … dynamical-system solving analog devices are a powerful new ultra-low-power computing substrate capable of executing dynamical systems in a performant and energy-efficient manner. This class of devices leverages the physical behavior of transistors to directly implement computation. Under this …

    mit Repository record for Compilation Techniques for Reconfigurable Analog Devices (opens in a new tab)

  8. BOOLEAN AND BRAIN-INSPIRED COMPUTING USING SPIN-TRANSFER TORQUE DEVICES

    … Such STT devices can be explored in compact, low power memory and logic design. In order to truly leverage STT devices based computing, researchers require a re-think of circuit, architecture, and computing model, since the STT devices are unlikely to be drop-in replacements for CMOS. The …

    purdue-thes Repository record for BOOLEAN AND BRAIN-INSPIRED COMPUTING USING SPIN-TRANSFER TORQUE DEVICES (opens in a new tab)