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Performance Investigation of Genetic Algorithm Based LCL Resonant Converter in Marine Applications

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TLDR
In this paper, a steady state stability analysis of LCL RC using frequency plot is presented, which shows the supremacy of GA-based PID controller over the conventional PID control method, and the applicability of the Philips ARM (Advanced RISC Machine) processor LPC 2148 for implementing the GA based PID controller for marine applications.
Abstract
This manuscript presents steady state stability analysis of LCL RC using frequency plot. Careful analysis favours LCL RC has the fine stability region. Also this paper presents a comparative estimation of conventional Proportional Integral Derivative (PID) Controller and Genetic Algorithm (GA) based PID controller for a modified LCL RC. The above controllers are simulated using MATLAB and their performance is analyzed. Result of the analysis shows the supremacy of GA based PID controller over the conventional PID control method. Design, simulation and experimental results for a 133W, 50 KHz GA based LCL resonant converter is presented in this script. In this work, the applicability of the Philips ARM (Advanced RISC Machine) processor LPC 2148 is also investigated for implementing the GA based PID controller for marine applications. [

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Distributed Control for DC Microgrid Based on Optimized Droop Parameters

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Fuzzy controller based power quality improvement in three level converter with multiloop interleaved control for marine AC/DC applications

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Voltage regulation and enhance load sharing in DC microgrid based on Particle Swarm Optimization in marine applications

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Mathematical modelling and application of generalized unified power flow controller (GUPFC) steady state model for power system network

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References
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TL;DR: In this article, the authors present the computer techniques, mathematical tools, and research results that will enable both students and practitioners to apply genetic algorithms to problems in many fields, including computer programming and mathematics.
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Optimum Settings for Automatic Controllers

TL;DR: In this paper, the three principal control effects found in present controllers are examined and practical names and units of measurement are proposed for each effect and corresponding units for a classification of industrial processes in terms of two principal characteristics affecting their controllability.
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TL;DR: This paper presents a meta-analysis of the Dynamic and Static Behavior of Chemical Processes and the design of Control Systems for Multivariable Processes using digital computers.
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High-Performance Digital Resonant Controllers Implemented With Two Integrators

TL;DR: In this paper, a simple expression to calculate the target leading angle, in delay compensation schemes, is also proposed to improve stability margins by means of a better accuracy than previous approaches, and experimental results obtained with a laboratory prototype corroborate the theoretical analysis and the improvement achieved by the proposed discrete-time implementations.
Journal ArticleDOI

A Design Procedure for Optimizing the LLC Resonant Converter as a Wide Output Range Voltage Source

TL;DR: In this article, a design procedure is introduced for using LLC resonant converter as a wide output range voltage source, where the maximum value of the capacitor in parallel with the power MOSFETs drain-sources is derived to realize the zero voltage switching operation in the converter inductive region.
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