MUMBAI, India, July 24 -- Intellectual Property India has published a patent application (202641085113 A) filed by Dr. Arun Balaji Parameswaran; Dr. P. Deepavathi; Ms. S. Ambika; Abishek Prabhu M A; Aegan; and Sakthi Ganesh on July 11, 2026, for Iot Enabled Smart Inverter System With Automatic Load Balancing, Healthy Phase Switching.
Inventors include Dr. Arun Balaji Parameswaran; Dr. P. Deepavathi; Ms. S. Ambika; Abishek Prabhu M A; Aegan; and Sakthi Ganesh.
The application for the patent was published on July 17, 2026, under issue no. 29/2026.
Abstract: The present invention relates generally to power electronics and electrical distribution systems, and more particularly to a smart inverter system employed for supplying and regulating power to load circuits. Specifically, it relates to an intelligent inverter architecture capable of automatically detecting phase faults or imbalance and switching to a healthy phase, while also balancing the load across phases and providing multifunction electrical parameter monitoring together with real-time Internet of Things (IoT) based remote monitoring. Conventional inverter and power distribution systems rely on a fixed phase configuration or require manual intervention by trained personnel to identify and correct phase related faults such as single-phasing, voltage sag, overvoltage or phase imbalance. However existing designs suffer from notable limitations: • Delayed Fault Response: Conventional systems depend on manual inspection or simple fuse/breaker protection resulting in slow detection of a failed or degraded phase and prolonged downtime of the connected load. • Absence of Automatic Reconfiguration: Standard inverter units lack an intelligent switchim ng mechanis capable of automatically transferring the load to a healthy phase the instant a fault is detected forcing reliance on manual switch operation. • Limited Parameter Visibility: Existing systems typically monitor only a single parameter, such as vroenltat, ge ando r cur provide no consolidated, real-time visibility of voltage, current, frequency, power factor, and temperature across all three phases. • No Remote or IoT-Based Monitoring: Traditional inverter panels confine monitoring to a local display offering no mechanism for remote visualization alerting or historical data logging via cloud or mobile-based platforms. This results in unplanned downtime, inefficient load management, increased risk of fire due to overheating, delayed fault rectification and an inability to remotely supervise the health of the power system thereby reducing overall reliability and increasing maintenance cost.
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