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I need to reproduce every technical element of a published study on an Electric Vehicle dual-charging system inside MATLAB/Simulink. That means rebuilding the paper’s mathematical models, running the same simulations, and then matching the resulting plots, tables and efficiency numbers through solid data analysis. I already have the PDF and a partial set of parameters (converter ratings, battery specs, and a few controller gains), yet several key values are missing. Your first task will be to track down or logically derive those gaps so the model behaves exactly as described by the authors. You’ll be working in MATLAB R2025a (Simulink + Simscape Electrical). Each subsystem—DC-DC converters, dual-port charger topology, control loops, and SOC estimation—must be organised, named clearly, and thoroughly commented so I can experiment with it later. Once everything runs, generate side-by-side comparisons of the original figures and the recreated ones, highlighting any small deviations and explaining the cause. Deliverables • Complete .slx model and any supporting .m scripts • A brief report (PDF or Markdown) showing: – Parameter list with sources or derivations – Screenshots/plots overlaid against the paper’s curves – Discussion of discrepancies and how they were minimised • Clean workspace folder ready for me to open and press Run Acceptance criteria The recreated waveforms and efficiency numbers should stay within ±3 % of the values reported in the paper, with all steps fully reproducible on my machine. If you’re confident working with EV charger control strategies and can bridge the remaining data gaps, let’s get started.
Project ID: 40210207
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Hi, Thanks for the detailed description — this is the kind of Simulink work I’m comfortable with. I’ve rebuilt published power-electronics and EV charging studies in MATLAB/Simulink where several parameters were missing and had to be derived logically from equations, operating points, and reported waveforms. I’m used to matching plots and efficiency numbers closely rather than just “getting it to run.” I can reproduce your EV dual-charging system using MATLAB 2017 with Simulink and Simscape Electrical, keeping everything compatible with that release (no newer blocks or features). The model will be structured into clear subsystems for the DC-DC converters, dual-port charger, control loops, and SOC estimation, with proper naming and comments so you can modify it later. My approach will be: Rebuild the mathematical models from the paper Derive missing parameters from equations, ratings, and control behavior Validate by overlaying recreated waveforms and efficiency results against the paper Document all assumptions and parameter sources clearly Deliverables will include the .slx model, supporting .m scripts, and a short report showing parameter derivations, plot comparisons, and explanation of any small discrepancies. I’ll aim to keep results within the ±3% range you specified and make sure everything runs cleanly on your machine. If you’d like, we can start by reviewing the paper and identifying the key unknown parameters before implementation. Best, Anum Shahzad
$20 USD in 3 days
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13 freelancers are bidding on average $41 USD for this job

Hello sir, reproducing an EV dual-charging paper isn’t just “building a Simulink model” the hard part is closing missing parameters and matching the authors’ efficiency within tight tolerance using defensible derivations. Well, what I can do for you as MATLAB expert with 8 years of experience is rebuild every technical element of the study inside MATLAB R2025a i.e. reconstruct the mathematical models, implement the dual-port charger topology , integrate control loops and SOC estimation, then run the same simulation scenarios and produce side-by-side figure comparisons against the paper. In fact, I’ve written extensive MATLAB code and developed multiple Simulink models in past power-electronics/power-system work (including a Battery Management System model and multi-frequency three-phase system simulations), so I’m comfortable with parameter inference, stable Simscape setups, control tuning, and the kind of “replicate-and-justify” reporting that academic reviewers expect.
$220 USD in 7 days
5.3
5.3

Hi, I am an electronics and communication engineer. I have completed many projects in matlab. I can complete your project in given time. Please send details of your project. I shall submit results. If you award me your project, I shall thankful to you.
$30 USD in 1 day
5.3
5.3

Dear Sir/Madam, I understand your requirements and am confident that I can deliver high-quality work for your Electric Vehicle dual-charging system project. With 8 years of experience in MATLAB/Simulink, I have worked extensively on EV charger control strategies, mathematical modeling, and simulation. I can help you fill in the missing parameters, recreate the study's models, and ensure that the results align closely with the original paper. I will guide you throughout the process and provide a clean and reproducible model that meets the required accuracy and functionality. Let’s connect in the chatbox to discuss the project further, including the budget and timeline. To know more about my experience, let's talk in a freelancer call, and I can share more details and sample works in the chatbox. I am ready to work with you, please connect in the chatbox for further discussions. Thank You. Dr. Divya.
$30 USD in 2 days
2.9
2.9

Hello, I’m an Electronics Engineer with extensive experience in MATLAB/Simulink and Simscape Electrical, especially in EV charging systems, DC-DC converters, and control modeling. I can recreate the published dual-charging system by rebuilding the mathematical models, logically deriving missing parameters, and running simulations to match the reported plots, tables, and efficiency figures. Deliverables will include a clean, well-structured Simulink model (.slx), supporting scripts, and a concise report with side-by-side comparisons and discrepancy analysis, fully reproducible on your machine within ±3% tolerance. Ready to start once you share the paper.
$25 USD in 7 days
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As an active EV researcher with 15+ published papers, I possess the academic rigor and modeling expertise to replicate this study with absolute precision. I will analytically derive all missing parameters to ensure the model matches the paper’s transients and efficiency within the required 3% margin. You will receive a publication-ready, documented workspace, optimized for both immediate validation and future research scalability.
$30 USD in 5 days
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“I have hands-on experience in electrical systems such as power installations, circuit protection, motor controls, and automation. Mechanically, I’ve worked on equipment maintenance, mechanical assembly, HVAC systems, and troubleshooting rotating machinery. I’m skilled in combining both disciplines to deliver reliable engineering solutions.
$50 USD in 3 days
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I can fully reproduce the technical content of the paper in MATLAB/Simulink, rebuilding the mathematical models, control loops, and charger topology to closely match the authors’ results. I have a strong background in control systems, power electronics, and model-based design, with experience reconstructing published models when parameters are incomplete—deriving missing values logically and validating them through simulation and data analysis. I’m also experienced in producing clean, well-documented Simulink models and clear side-by-side comparisons against reference figures. In addition, my teaching experience helps me structure models and documentation in a clear, modular way, making the system easy to understand, modify, and extend. I’m confident I can achieve the ±3% accuracy requirement and deliver a clean, fully reproducible workspace. I’d be happy to get started and discuss the paper details.
$20 USD in 7 days
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Hi, I can help you recreate the **EV dual-charging system** model in **MATLAB/Simulink** as described in the published study. Here's my approach: 1. **Rebuilding Mathematical Models**: I’ll translate the study's technical elements into MATLAB/Simulink using **Simscape Electrical** for subsystems like DC-DC converters, dual-port charger topologies, control loops, and SOC estimation. 2. **Filling Missing Parameters**: Using the available specifications (converter ratings, battery specs, controller gains), I’ll either derive the missing values logically or search for them in related literature or studies to ensure the model behaves as described in the paper. 3. **Simulation & Validation**: I’ll run simulations, generate the required plots, and compare them with the original study. Any discrepancies (within ±3%) will be highlighted with explanations and causes for deviations. 4. **Deliverables**: * Complete `.slx` model and necessary **.m scripts**. * **Report (PDF/Markdown)** with: * Parameter list with sources/derivations * Screenshots/plots comparing original and recreated figures * Discussion of discrepancies and solutions. * A clean workspace that’s ready to run immediately on your machine. I’ve previously worked on EV and power electronics simulations in MATLAB/Simulink, so I’m comfortable with EV charger control strategies. Looking forward to getting started! Best Regards,
$20 USD in 7 days
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I can help you reproduce the EV dual-charging system from the paper in MATLAB/Simulink (R2025a + Simscape Electrical). I’ve done similar work where the paper doesn’t give all parameters, so the first step for me would be to identify what’s missing and logically derive or estimate those values using standard converter design equations, control tuning rules, and power balance checks — so the model behaves the same way as in the paper. What I’ll do * Rebuild the full Simulink model (DC-DC converters, dual-port charger, controllers, SOC estimation) *Organise everything into clean subsystems with proper names and comments *Use MATLAB scripts for parameter setup, plots, and efficiency calculations *Run the same test cases as in the paper and match the plots and tables *Compare results side-by-side and explain any small differences What you’ll get A ready-to-run Simulink project folder .slx model + supporting .m files A short report (PDF or Markdown) with: Final parameter list (given + derived) Recreated plots compared with the paper Notes on deviations and how they were reduced Accuracy *I’ll tune and validate the model so the main waveforms and efficiency numbers stay within ±3% of the paper’s results, as requested. *If you share the paper and the parameters you already have, I’ll first send you a clear gap list and modeling plan, so we’re aligned before going deep into Simulink. Thanks, Burhanuddin
$10 USD in 1 day
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Rangpur, Bangladesh
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