MUMBAI, India, Aug. 17 -- Intellectual Property India has published a patent application (202641095571 A) filed by St. Josephs College Of Engineering; Harish Shankar B; Sivaraman D; and Dr. Jayarama Pradeep on August 06, 2026, for Proactive Ev Load Balancing Using Ble Sensing And Multiport Power Control.
Inventors include St. Josephs College Of Engineering; Harish Shankar B; Sivaraman D; and Dr. Jayarama Pradeep.
The application for the patent was published on August 14, 2026, under issue no. 33/2026.
Abstract: A distributed sensing framework utilizing BLE communication is employed to identify nearby EVs and estimate proximity through Received Signal Strength Indicator (RSSI) analysis. Real-time battery State of Charge (SoC) data is acquired and processed using a priority-driven allocation algorithm to dynamically regulate charging power. The present invention relates to a proactive electric vehicle (EV) load balancing system using Bluetooth Low Energy (BLE) sensing and multiport power control. The system is designed to improve the efficiency and reliability of EV charging infrastructure by enabling intelligent power distribution among multiple vehicles. Unlike conventional reactive charging methods, the proposed system detects nearby EVs in advance through BLE communication without requiring physical connection. The system acquires key parameters such as battery state of charge (SoC) and signal strength (RSSI) to estimate proximity and charging requirements. Based on these inputs, a priority-based control algorithm dynamically allocates charging power, ensuring that EVs with lower battery levels receive higher priority. The system utilizes a microcontroller-based architecture to control relay switching or DC–DC converters for effective multi-vehicle charging. Additionally, real-time monitoring of voltage and current enhances operational safety and prevents overload conditions. The proposed solution provides reduced waiting time, optimized energy utilization, and scalable charging management, making it suitable for next-generation smart EV charging stations.
Disclaimer: Curated by HT Syndication.