A Decentralized IoT-Enhanced Mobile Agents for Resilient E-Commerce
Mohamed Shili, Salah Hammedi, Amjad Gawanmeh · 2025
The incorporation of Internet of Things (IoT) and mobile agents in e-commerce systems offers a transformative approach to improving customer experiences and functional effectiveness. These systems are characterized by autonomous digital representatives with mobility, perception, reasoning, and action capabilities in their environment, as well as their capacity to collaborate with other representatives to solve complicated issues. This study investigates how these representatives help IoT-powered digital markets achieve intelligent logistics, adaptive inventory management, and real-time customization. Independent representatives utilize sophisticated algorithms for resource management, negotiation, and decision-making to enable smooth interactions between providers and customers. The suggested solution addresses issues with scalability, data protection, and ethical considerations while utilizing advanced learning techniques for analysis of client behavior and adaptive product suggestions. A distributed IoT-enabled marketplace's interactions between several representative types-those handling purchasing, supply, inventory, and monitoring functions-are described in a conceptual design. The research demonstrates how this approach creates more responsive digital commerce environments that operate effectively even under connection constraints. The implementation shows particular strength in scenarios requiring immediate responses, such as competitive bidding situations, where traditional systems might suffer from transmission delays. By creating self-governing digital entities that can function with minimal supervision, the system establishes a foundation for next-generation commercial platforms that combine intelligence, efficiency, and enhanced user experiences.