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I want to build a small-scale hybrid renewable power system—solar panels, wind turbines and tidal generators all working together—inside SimulIDE, driven solely by an Arduino sketch. The goal is purely educational: I need to show that combining these three sources is feasible and to let students see exactly how each part talks to the others. Because of that, the spotlight is on component interactions rather than chasing perfect efficiency or bullet-proof stability. Your task is to create the full SimulIDE project and the matching Arduino code so that: • the three virtual sources feed a common DC bus, • the Arduino reads representative voltage/current sensors for each source, decides which source should be prioritised, and controls simple switch-mode elements (relays or MOSFETs available in SimulIDE) accordingly, • live plots inside SimulIDE clearly illustrate how the sources share the load as conditions change. Please stay within the native component library of SimulIDE; no external SPICE or additional microcontrollers. Once the model runs, I also need a concise walkthrough—screenshots plus comments in the code—so others can reproduce the experiment and tweak parameters easily. Deliverables: the .simu file, the .ino file, and a short PDF or Markdown guide explaining setup, wiring logic and expected classroom talking points.
Project ID: 40633358
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18 freelancers are bidding on average $1,219 AUD for this job

As an avid electrical engineer with a specialization in firmware development and a robust understanding of connected systems, I am not only fully capable of undertaking this unique SimulIDE Arduino hybrid power project, but I am exceptionally qualified to deliver on its objectives. Having extensively worked with Arduino, including using it in diverse hybrid renewable energy systems, I can skillfully create your full SimulIDE project while only utilizing the native component library. My designs will incorporate all the relevant elements and sensor inputs to demonstrate how different power sources can be prioritized and managed in real-time. In addition to creating the requested .simu and .ino files, I understand the immense importance of documentation, specifically in an educational setting. Thus, I guarantee you a concise yet comprehensive step-by-step guide that precisely explains both setup logistics and the intricacies of the wiring logic. I've been an embedded system engineer for 5 years and have consistently strived for innovation and optimization in my work. Notably - my expertise doesn't stop at purely electrical engineering. As a firm believer in offering integrated solutions, my knowledge also extends to AI, Machine Learning & Deep Learning—which can greatly aid in data analysis for load sharing of your hybrid power system.
$1,300 AUD in 15 days
8.4
8.4

Hi there, I have carefully reviewed your requirements and the provided hybrid solar + wind + tidal system concept. I can build the complete **SimulIDE project and Arduino sketch**, with all three renewable sources feeding a common DC bus, Arduino-based voltage/current monitoring, source-priority control, MOSFET/relay switching, and live plots for classroom demonstrations. As a mechatronics engineer with nearly five years of experience in electronics, Arduino-based control, power systems, sensors, and embedded C/C++, I have already worked with the main components and concepts involved in your project, including Arduino, voltage/current sensing, MOSFET/relay control, DC power conversion, solar, wind, and renewable-energy monitoring systems. I can keep the simulation entirely within SimulIDE's native component library as requested. I will deliver the `.simu` file, well-commented `.ino` code, and a concise illustrated guide explaining the wiring, control logic, testing scenarios, and classroom talking points. Given my skill set, I can complete and debug the model efficiently so it is easy for students to understand and modify. Please send me a message, and we can get started. Best regards, Samuel tshibangu
$1,125 AUD in 1 day
6.5
6.5

To build a SimulIDE-based hybrid renewable classroom demo, I’ll deliver the complete .simu model and matching Arduino .ino code that runs inside SimulIDE only. What you’ll get: - Three virtual sources (solar, wind, tidal) tied into a shared DC bus. - Arduino sketch that reads representative voltage/current sensors for each source. - Simple source-prioritization logic and control of SimulIDE switch-mode elements (relays/MOSFETs) to route power onto the DC bus. - Live SimulIDE plots showing bus voltage and each source’s contribution, so students can observe load sharing as conditions change. - Code comments + a concise guide (Markdown/PDF) with setup steps, wiring logic, and classroom talking points. I’ll keep everything inside SimulIDE’s native component library and focus on interactions: how the measurements drive decisions, and how switching alters power flow.
$750 AUD in 6 days
3.1
3.1

Hi, I've reviewed your project for the SimulIDE Arduino Hybrid Power Design and it sounds like a fantastic educational initiative. I can help you create a fully functional model that integrates solar panels, wind turbines, and tidal generators, showcasing how they interact through Arduino code in SimulIDE. My approach will focus on establishing a common DC bus for the three energy sources, implementing voltage/current sensing, and controlling the switching elements effectively. I will ensure that the live plots illustrate the load-sharing dynamics clearly. Additionally, I will provide a concise guide with screenshots and comments to facilitate easy reproduction and parameter tweaking. Could you share any specific parameters or conditions you want to highlight in the simulation? Best regards, Waqas & GoDesign Team
$750 AUD in 3 days
0.0
0.0

Willetton, Australia
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Member since Oct 5, 2019
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