Solar Panel Washing Robot
As the team lead of a five-member group, I spearheaded the end-to-end design and prototyping of a solar panel washing robot—an ambitious and sustainability-focused initiative supported by Shidsun Company and the National Elite Foundation. The project spanned six months (September 2021 to February 2022), during which I coordinated technical tasks, oversaw progress milestones, and facilitated collaboration among cross-functional teammates. The goal was to address the growing need for efficient maintenance of solar energy systems, especially in regions where dust accumulation significantly reduces energy output. The outcome was a functional prototype capable of autonomously cleaning large solar arrays, paving the way for scalable green-tech applications.(Sep 2021 - Feb 2022)
Electricity from Sea Waves
I conceptualized and developed an innovative system designed to generate electricity using electromagnetic and piezoelectric waves from sea wave motion. This solution aimed to capture the significant kinetic energy of ocean waves—especially during storms—and convert it into sustainable electric power. While the project was not formally patented, it gained national recognition and was honored at the Tebyan Festival and Shahid Beheshti University for its innovation and relevance in the renewable energy field. This achievement marked a major step in my early journey as a problem-solver passionate about environmentally conscious solutions.
Electricity from Floods & Snow
I designed a concept for generating electricity using electromagnetic pits that harness the kinetic and gravitational energy of floods and melting snow. This multidisciplinary project bridged the gap between environmental engineering and sustainable energy by addressing three critical goals simultaneously: clean energy generation, effective flood control, and improved access to clean water through managed runoff systems. The system was particularly envisioned for regions with seasonal snowmelt or heavy rainfall, offering a dual benefit of disaster mitigation and renewable energy. This project was a defining moment in my efforts to combine environmental challenges with future-oriented innovation.
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Fighter Robot
I led the full-cycle design and development of a warrior robot specifically engineered for competitive challenges, culminating in winning 2nd place after a full year of hands-on development, testing, and refinement. The robot featured a trapezoid-shaped frame for enhanced balance and maneuverability, along with a mechanical actuator system that enabled precise motion control during combat-style simulations. The project tested my resilience, mechanical design thinking, and ability to optimize under high-pressure conditions. Beyond the competition, this experience fueled my fascination with robotics, teamwork, and problem-solving through engineering.
InnoXtra
I founded InnoXtra as a forward-thinking innovation platform with a mission to empower creators, visionaries, and next-generation talents through strategic collaboration and real-world impact. While the core mechanics of the platform remain confidential, InnoXtra focuses on bridging the gap between ideation and execution, enabling individuals to transform bold concepts into validated, scalable solutions. Rooted in digital commerce, creativity, and community-driven momentum, the platform is designed to support sustainable growth and meaningful change across industries. What began as a spark of inspiration is now evolving into a space where innovation meets purpose.
Harvest Hub
Harvest Hub is a next-generation initiative focused on solving food security challenges through the power of artificial intelligence and lifecycle optimization. By integrating smart systems that connect production, monitoring, distribution, and consumer access, the project reimagines how food moves across ecosystems — aiming for efficiency, fairness, and sustainability. While specific features of the platform remain confidential, the vision of Harvest Hub is to build a scalable, impact-driven solution that can adapt to global needs and local realities. From smart farms to real-time demand prediction, the project’s foundation lies in tech-enabled resilience and human-centered design.