HANU: Heuristic Asynchronous NoC for universal power electronics application
Erulappan Sakthivel, Muruganantham Arunraja, Veluchamy Malathi · EPE Journal · 2019
Nowadays there are vast enlargements in the grid applications; the control strategy of power electronics systems has also spread their locality extensively. Single processor of complex hardware is used in the conventional method, to generate the control strategy for microgrid. To avoid this issue, we cultivate a low-power microgrid with the help of NoC. Reconfigurable Double Tailed Sense Amplifier (RDTSA) based on the NoC is selected for the reduction of power. History based Dynamic Frequency Scaling (HDFS) is implemented in RDTSA for further power reduction. The combination of this is named as a Mixture of Algorithm with NoC (MAN) architecture, which has been refined from the ALPIN architecture. Cultivation of the entire design results in delay and power reduction compared to the conventional method. The performance of delay, data rate static power and energy are evaluated compared to conventional method and the RDTSA. The overall performance of Heuristic Asynchronous NoC for Universal power electronics application (HANU) is superior to that of the conventional approaches.