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High-Precision Landing on a Moving Platform Based on Drone Vision Using Yolo Algorithm
Published 2025“…To overcome the challenge of the flight altitude is too high to detect the landing target, this paper fi rst detects large-volume targets, followed by the precise identifi cation of smaller targets, achieving enhanced recognition accuracy and speed through an improved YOLOv8 OBB algorithm. …”
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The complete process of optimizing PID control algorithm based on WOA-LSTM.
Published 2025Subjects: -
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Schematic diagram of sliding mode variable structure control algorithm design content.
Published 2024Subjects: -
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Synthesis of On-Demand Gold Nanoparticles with Precision Morphologies through an Automatic Feedback Control Quenching System
Published 2025“…Here, we present a Cuvette-based Absorbance Real-time Tracking and Quenching (CART-Q) system for synthesizing Au NPs with precise morphologies via closed-loop feedback control based on ultraviolet–visible (UV–vis) absorbance. …”
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Synthesis of On-Demand Gold Nanoparticles with Precision Morphologies through an Automatic Feedback Control Quenching System
Published 2025“…Here, we present a Cuvette-based Absorbance Real-time Tracking and Quenching (CART-Q) system for synthesizing Au NPs with precise morphologies via closed-loop feedback control based on ultraviolet–visible (UV–vis) absorbance. …”
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Synthesis of On-Demand Gold Nanoparticles with Precision Morphologies through an Automatic Feedback Control Quenching System
Published 2025“…Here, we present a Cuvette-based Absorbance Real-time Tracking and Quenching (CART-Q) system for synthesizing Au NPs with precise morphologies via closed-loop feedback control based on ultraviolet–visible (UV–vis) absorbance. …”
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Synthesis of On-Demand Gold Nanoparticles with Precision Morphologies through an Automatic Feedback Control Quenching System
Published 2025“…Here, we present a Cuvette-based Absorbance Real-time Tracking and Quenching (CART-Q) system for synthesizing Au NPs with precise morphologies via closed-loop feedback control based on ultraviolet–visible (UV–vis) absorbance. …”
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