My academic journey has equipped me with a solid foundation in Industrial Engineering, and my nearly 5 years of diverse professional experiences in manufacturing, supply chain management, and logistics have allowed me to apply these concepts in practical settings across various industries. I have undertaken multiple roles, from supply chain specialist to industrial consultant, which have broadened my skill set and industry insights. My passion lies in the modelling, simulation, forecasting, and data analysis of supply chains and production systems, particularly in the context of managing uncertainties both within and outside of the systems. My primary objective has always been to establish clear targets that optimize profit, service levels, product quality, and demand responsiveness, all while prioritizing the resilience, flexibility, and agility of these systems.
As someone with a natural curiosity and a drive to push the boundaries of knowledge, I have embarked on a PhD journey at the University of New South Wales in Australia. This exciting academic pursuit allows me to collaborate with esteemed research groups such as RACE for 2030, Buildings Alive, and CEEM, contributing to accelerated energy transition plans and environmental sustainability goals within the Australian building sector by 2030.
In my role as a research fellow, I focus on developing data-driven optimization strategies and conducting in-depth analyses and forecasts of building electrical consumption patterns. By doing so, I aim to provide innovative solutions that not only optimize energy consumption but also minimize greenhouse gas emissions, thus contributing to a more sustainable and environmentally responsible future for the Australian energy grid.
I am enthusiastic about the opportunities that lie ahead and remain dedicated to my pursuit of knowledge and innovative solutions that positively impact our world.
-Development of data-driven algorithms to maximize benefits of load shifting from economic and environmental perspectives in building sector.
- Analyzing data sets related to electricity demand, wholesale electricity prices, carbon emissions and share of renewable energy sources in commercial buildings
- Providing data-driven algorithms to find optimal energy consumption and load balancing points.
-Optimization of environmental and economic goals based on dynamic behavior of building sector.
-Collaborated with other researchers to write and distribute impactful results of "Fast-truck to net zero carbon buildings" research topic.
-Performed scientific research on multiple projects.
-Developed unique research into Building decarbonisation
-Followed best practices and scientific protocol to reach defensible conclusions based on solid evidence.
My cooperation with RACE for 2030 is based on a contract between UNSW and RACE for 2030 for financial sponsoring my PhD project.
- Providing valuable insights, data, and tools that facilitate efficient energy and environment management, consumption optimization, and informed decision-making.
-As an academic member of this group, I am involved in analyzing, and providing actionable insights from energy-related data.
- Contributing to make more resilient, sustainable, and responsive energy clean energy analysis system.
Collaboration on Energy and Environmental Market (CEEM) is a scientific group at school of Photovoltaic and Renewable Energy Engineering, UNSW.
- Analyze historical data, market trends, and customer orders to predict future demand for products.
- Helping to align production schedules with anticipated requirements, reducing the risk of overproduction or stockouts.
- I have tried to ensure that drugs are manufactured based on actual market demand rather than excessive speculation.
-Efforts to minimizes holding costs and maximizes working capital efficiency.
- Taking into account factors like machine availability, labor resources, and production cycle times. This ensures that production levels are feasible and can be met without causing bottlenecks.
- Creating a detailed production schedule. I have tried to determine when and how each manufacturing operation should take place, considering factors like available resources, lead times, and order priorities.
-Resource Allocation: Efficiently allocating resources to meet production targets. Efforts to make balance resources to ensure optimal utilization and minimal wastage.
- Assistance the organization in developing long-term strategies that align with their goals and market trends.
- Analysis of existing operational processes and identify areas for improvement. Recommending strategies to streamline workflows, reduce waste, optimize resource utilization, and enhance overall efficiency.
- Developing into the intricacies of manufacturing and production processes to identify bottlenecks and inefficiencies. Addressing process redesigns, technology integration, and automation solutions to increase productivity and reduce costs.
- Evaluation of supply chain structures, logistics, and procurement strategies to ensure a smooth flow of materials and products.
-Implementing new strategies or technologies often requires organizational changes.
-Developing business acceleration plans for maximizing the profit based on short-term and long term production and logistics plans .
It was a contract-based job in parallel to previous mentioned job position
-Monitor and control inventory levels to ensure adequate stock while minimizing excess or obsolete inventory.
-Implement inventory forecasting techniques to predict demand and optimize inventory turnover.
-Coordinate with suppliers to maintain a reliable supply of raw materials or products.
-Identify, evaluate, and select suppliers based on criteria like cost, quality, reliability, and ethical practices.
-Collaborate with sales and marketing teams to understand market demand and customer trends.
-Create demand forecasts and production schedules to meet customer requirements.
-Plan and execute the migration of data from legacy systems to the new ERP platform, ensuring data accuracy and integrity.
-Conduct thorough testing of the ERP system to identify and resolve any issues or bugs before going live.
-Collaborate with business units to identify opportunities to optimize processes and workflows through ERP system customization.
- Determine the most efficient and cost-effective transportation routes for goods, considering factors like distance, mode of transport, and delivery schedules.
-Evaluate and select transportation carriers based on criteria like cost, reliability, and service quality.
-Negotiate transportation contracts and rates with carriers to secure favourable terms for the organization.
-Monitor and track the movement of shipments in real-time to ensure on-time deliveries and address any delays or issues promptly.
-Monitor transportation costs and seek opportunities to reduce expenses while maintaining service levels.
-Develop and manage transportation budgets.
-Maintain open communication with customers and address inquiries or concerns related to shipments.
-Strive to meet or exceed customer delivery expectations.
- Developing smart algorithms and data-driven decision making models in the line of airline revenue management using control of seat inventory, dynamic pricing policies and attention to market behaviour
-Helped with grading assignments and tests, providing constructive feedback to students based on results.
-Assisted teachers with classroom management and document coordination to maintain positive learning environment.
-Supported classroom activities, tutoring, and reviewing work.
-Assisted in maintaining engaging and respectful educational environment by promoting discipline and cooperation.
-Facilitated activities in small groups to reinforce concepts taught by class teacher.
-Tutored struggling students individually and in small groups to reinforce learning concepts.
-Full PhD Scholarship from University of New South Wales, Australia (For an industrial project under sponsorship of RACE for 2030)/2022
-Full PhD Scholarship from Technical University of Dresden, Germany /2023
-Publishing high qualified ISI articles in the field of bio-energy supply chain design and management as the main author in very famous journals.
You can find them using this link:
https://scholar.google.com/citations?user=GIWzlIwAAAAJ&hl=fa&oi=ao
I have a temporary visa as an international PhD student, for living and unlimited working at Australia from March 2023 to November 2027. It am willing to mentioned that International PhD students are a group of students that have permission for full time working without any restriction. All details can be provided using the document of my visa upon your request.