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By using Matlab I need to solve it Dynamic Response of Half-Bridge Converter Consider the half-bridge converter of Figure 2.1. The system parameters are L = 690 uH, R = 5 ms, VDc/2 = 600 V, Vs = 400 V, m = 0.68, and fs = 1620 Hz (or equivalently Ts = 617 Ms). Initially, the converter is in a steady state. Then, m is changed from 0.68 to 0.685, Vs is changed from 400 to 415 V, and VDc/2 is changed from 600 to 605 V, respectively, at t = 0.2 s, t = 0.7 s, and t = 1.5 s. Assignment: Perform the simulation using both the switched model and the average model and plot the results on the same figure for: (Due date: Oct. 25 2025) 1. Terminal voltage V 2. DC current i, 3. DC power Poc 4. Output currenti Then there are another plot but related to the first , Closed-Loop Response of the Half-Bridge Converter Consider the half-bridge converter of Figure 3.1 with parameters L = 690 H, R = 5 ms, Ton = 0.88 ms, Va = 1.0 V, VDc/2 = 600 V, Vs = 400 V, and fs = 1620 Hz. To achieve a closed-loop time constant of 5 ms, the compensator parameters are chosen as kp = 0.138 S2 and kj = 1.176 S/s. Initially, the half-bridge converter system is in a steady state and i = 0. The current command, iref, is first changed from 0 to 1000 A, at t = 0.1 s, and then changed from 1000 to - 1000 A, at t = 0.2 s. These correspond to changes in the AC-side power from 0 to 400 kW and from 400 to -400 kW, respectively.
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Hi there,\n\nI’m excited to tackle the dynamic response simulation of the half-bridge converter! With my extensive experience in MATLAB and signal processing, I am confident in my ability to accurately simulate both the switched and average models, ensuring you receive consistent and insightful results. \n\nI will conduct the simulations according to the parameters you’ve provided, and generate plots for terminal voltage, DC current, DC power, and output current, all while adhering strictly to your specifications. Following that, I’ll also focus on the closed-loop response with appropriate compensator parameters to ensure accuracy. I anticipate that this project will take around 10 days to complete, allowing for thorough analysis and revisions. \n\nThanks,
$30 USD em 1 dia
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5,4

My name is Rabia Faisal, I am working in the writing industry since 2011. During this time, I have served countless clients with a full amount of satisfaction by providing them with TOP Quality Solutions. I have command of all references APA, Harvard, IEEE, MLA & Chicago, etc. I will provide plagiarism-free work with 100 percent accurate grammar within your given deadline. Please message me to get Top Class Services. I am waiting; https://www.freelancer.com/u/TopWritingGuru
$10 USD em 1 dia
3,5
3,5

hi, i read the brief. I can build both the switched and average models in MATLAB/Simulink, apply all parameter changes at the exact times you listed, and generate clean overlaid plots for terminal voltage, DC current, DC power, and output current. I’ll also implement the closed-loop model with the given compensator values and produce the step-response plots for the +1000 A and –1000 A commands. You’ll receive the .slx models, MATLAB scripts, and clear publication-ready figures. I can deliver everything well before the due date. Regards Jahan
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2,2
2,2

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$10 USD em 1 dia
2,1
2,1

Dear, I have strong experience with MATLAB/Simulink and power electronics, and I’m confident I can model and simulate the dynamic and closed-loop response of the half-bridge converter exactly as required. I can implement both the switched and average models, generate the requested plots for terminal voltage, DC current, DC power, and output current, and then build the closed-loop current control response using the given parameters and commands. All simulations will be clearly organized, with well-commented code so you can follow and modify it easily. You can check my profile for similar MATLAB and converter-related work I’ve done. Let’s connect in the chatbox to discuss your project details, expected format (scripts, Simulink models, report), and deadline, and I’ll ensure everything is delivered in a clear, ready-to-submit form.
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1,2
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