This paper presents the development of a universal system designed for creating web applications that function as components of an automated equipment control system. The user interface development component of the sy...
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The proceedings contain 82 papers. The topics discussed include: multi-objective logistics park functional block layout based on genetic algorithm;blind sidewalk segmentation based on the lightweight semantic segmenta...
The proceedings contain 82 papers. The topics discussed include: multi-objective logistics park functional block layout based on genetic algorithm;blind sidewalk segmentation based on the lightweight semantic segmentation network;wooden pallet image segmentation based on Otsu and marker watershed;hyperspectral image classification based on composite kernel relevance vector machine;image recognition and detection based on fast area convolutional neural network;application of two-dimensional truncated singular value decomposition in image restoration;research on distribution center layout optimization based on genetic algorithm;automatic detection of thyroid nodules with ultrasound images: basing on semi-supervised learning;visual detection of eggs based on deep learning for egg picking robot;emotion recognition of musical instruments based on convolution long short time memory depth neural network;and research on improvement of hybrid particle swarm algorithm in underwater active electric field positioning technology.
This paper first proposes a home lighting energy saving monitoring system based on embedded Linux. Then this paper introduces the internal bus power supply and communication interface of DALI2.0, as well as the matchi...
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In the era marked by rapid advancements in "green energy"and storage technologies, microgrids integrated with distributed generation principles emerge as a promising avenue for efficient power management. DC...
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X-ray security check is a prevalent placement measure that plays a vital role in ensuring public safety. However, detecting prohibited items poses a complex challenge due to their variable sizes within X-ray images. I...
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A patch antenna for 5G applications can be constructed, simulated, and optimized utilizing Rogers RT5880 material. The finished antenna was replicated using computer simulation techniques. The simulation results demon...
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This research study aims to design and implement an advanced automation system for pelletizers, integrating load control technology to optimize pellet production processes. Pelletizers are widely used in industries su...
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In practically every area of life, deep learning algorithms have accelerated the development of new technology. As a result, its application is also used in the field of medical imaging. One of the worst illnesses in ...
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Molecular communication (MC) is a bio-inspired method of transmitting information using biochemical signals, promising for novel medical, agricultural, and environmental applications at the intersection of bio-, nano-...
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ISBN:
(纸本)9798400711718
Molecular communication (MC) is a bio-inspired method of transmitting information using biochemical signals, promising for novel medical, agricultural, and environmental applications at the intersection of bio-, nano-, and communication technologies. Developing reliable MC systems for high-rate information transfer remains challenging due to the complex and dynamic nature of application environments and the physical and resource limitations of micro/nanoscale transmitters and receivers. Microfluidics can help overcome many such practical challenges by enabling testbeds that can replicate the application media with precise control over flow conditions. However, existing microfluidic MC testbeds face significant limitations in chemical signal generation with programmable signal waveforms, e.g., in terms of pulse width. To tackle this, we previously proposed a practical microfluidic MC transmitter architecture based on the hydrodynamic gating technique, a prevalent chemical waveform generation method. This paper reports the experimental validation and characterization of this method, examining its precision in terms of spatiotemporal control on the generated molecular concentration pulses. We detail the fabrication of the transmitter, its working mechanism and discuss its potential limitations based on empirical data. We show that the microfluidic transmitter is capable of providing precise, programmable, and reproducible molecular concentration pulses, which would facilitate the experimental research in MC.
During the motion of a robotic arm, its response speed and trajectory accuracy are crucial. This paper analyzes the control mode of the traditional PID controller, combines the principle of particle swarm algorithm, a...
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