In this paper, the dynamic mechanical properties of jumper cables in offshore floating photovoltaic power systems are studied. By establishing a mathematical model based on parabola theory and using finite element sim...
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ISBN:
(纸本)9798350388084;9798350388077
In this paper, the dynamic mechanical properties of jumper cables in offshore floating photovoltaic power systems are studied. By establishing a mathematical model based on parabola theory and using finite element simulation software for experimental analysis, the stability and reliability of jumper cable in Marine environment are discussed in this study. It is found that the design and laying of jumper cables are crucial to the performance of the entire power system, especially in the electrical properties, mechanical properties, weather resistance and corrosion resistance of the cables. In addition, factors such as the bending radius, tension, redundant length and protective measures of the cable also need to be carefully considered to ensure the normal operation and maintenance of the cable, reduce costs and extend the life of the cable. This study provides theoretical support for the scale, commercialization and standardization of offshore photovoltaic power systems, and has guiding significance for future design and performance optimization.
In this paper, we investigated the relationship between clipping ratio and bit-error rate (BER) for a discrete multitone (DMT) wireline transceiver. The peak-to-average-power ratio (PAPR) controls the trade-off betwee...
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Through technology computer-aided-design (TCAD) simulation and ferroelectric capacitor measurement, we optimized the write bias scheme in on-chip training of HfO2-based ferroelectric field-effect-transistor (FeFET) sy...
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Major challenges for system-level Design Space Exploration (DSE) include (a) tremendous search-space sizes for modern many-core architectures and networked systems and (b) the preponderance of infeasible solutions in ...
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ISBN:
(纸本)9783031045806;9783031045790
Major challenges for system-level Design Space Exploration (DSE) include (a) tremendous search-space sizes for modern many-core architectures and networked systems and (b) the preponderance of infeasible solutions in the search space from which no actual implementations can be derived. Since current DSE approaches are not equipped to handle these developments, we propose the integration of deep generative models into DSE to automatically compress large-scale search spaces, thus (I) reducing problem complexity faced by the optimizer while (II) learning a model of feasible solutions to focus the optimization on. The proposed approach is seamlessly integrated into state-of-the-art DSE flows, is complementary to existing search-space pruning techniques, and its potential to improve optimization quality by up to approximate to 66% is demonstrated for a variety of DSE problems.
This study presents a novel e-deliberation model that incorporates a rewarding mechanism to enhance citizen engagement and improve the quality of deliberative processes. The model simulates interactions between citize...
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A small deep hole drilling control system based on the capuchin search algorithm to optimize fuzzy PID is proposed to improve the efficiency of small deep hole drilling. Based on the difference between the actual axia...
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ISBN:
(纸本)9781665477260
A small deep hole drilling control system based on the capuchin search algorithm to optimize fuzzy PID is proposed to improve the efficiency of small deep hole drilling. Based on the difference between the actual axial force and the expected axial force, the system adaptively adjusts the quantization factor and scale factor of the fuzzy PID controller by using the capuchin search algorithm and adjusting the parameters of the controller in real-time to improve the system performance. The experimental results show that the CapSA-optimized fuzzy PID algorithm achieves the shorteststabilization time and slight overshoot. When the algorithm is applied to actual machining, the proposed algorithm has a faster response speed and more stable axial force. It can be adaptive to Change the PID drilling parameters to meet the production requirements of intelligent manufacturing..
In this paper a robust and accurate car detection system has been developed. To successfully detect vehicles in the road and taking into account the different weather conditions of the captured scenes, we use the Hist...
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The 21st century has brought widespread adoption of the cloud computing paradigm when constructing large-scale software systems. While the approach has enabled systems to exhibit software quality attributes such as hi...
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ISBN:
(纸本)9798350358810;9798350358803
The 21st century has brought widespread adoption of the cloud computing paradigm when constructing large-scale software systems. While the approach has enabled systems to exhibit software quality attributes such as high agility and scalability, it has also magnified long-standing issues related to maintaining both software development standards and their accompanying software implementations. The research aims to improve or maintain the quality of consumer-driven software as cloud computing adoption becomes more prevalent. Our model-driven approach intends to offer solutions to fix the typical disconnect between design and implementation. The paper demonstrates the construction of a cloud-based healthcare application using a modeling and simulation language called Colored Petri Nets (CPNs). It demonstrates design verification techniques during a model simulation and software prototyping in the context of a cloud-based healthcare application. The healthcare domain serves as an ideal candidate since the domain usually lags behind other industries in updating software development approaches and tools. Furthermore, a cloud-first approach allows for infrastructure that supports millions of patients and physicians distributed globally. The paper aims to promote the technical merits of model-driven design in maintaining high assurance of software quality standards, especially in the context of cloud-based applications. Key contributions of the paper are adoption of model-driven system development in the context of cloud-based applications and integration of machine-learning models into simulation models for such purposes.
The paper presents results of a research on the development of ship safe path planning algorithms for the application in the Decision Support system on-board a manned vessel or in the Autonomous Navigation system of u...
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In this paper we present a model of optimization in a form of an algorithm which solves optimal placement of routers in N chambers with N - 1 or less connections between them in a network system used i.e. for mining i...
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ISBN:
(纸本)9783031234798;9783031234804
In this paper we present a model of optimization in a form of an algorithm which solves optimal placement of routers in N chambers with N - 1 or less connections between them in a network system used i.e. for mining industry. The model is presented for using 2 types of routers with different signal strengths. Proposed algorithm is defined and examined on sample graph structures. Presented algorithm shall behave computational complexity of O(n(2)).
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