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Mohyeu Hussain

Publications and source records attributed to Mohyeu Hussain.

2 recordsLinked to original sources

Causal AI For AMS Circuit Design: Interpretable Parameter Effects Analysis

Analog-mixed-signal (AMS) circuits are highly non-linear and operate on continuous real-world signals, making them far more difficult to model with data-driven AI than digital blocks. To close the gap between structured design data (device dimensions, bias voltages, etc.) and real-world performance, we propose a causal-inference framework that first discovers a directed-acyclic graph (DAG) from SPICE simulation data and then quantifies parameter impact through Average Treatment Effect (ATE) estimation. The approach yields human-interpretable rankings of design knobs and explicit 'what-if' predictions, enabling designers to understand trade-offs in sizing and topology. We evaluate the pipeline on three operational-amplifier families (OTA, telescopic, and folded-cascode) implemented in TSMC 65nm and benchmark it against a baseline neural-network (NN) regressor. Across all circuits the causal model reproduces simulation-based ATEs with an average absolute error of less than 25%, whereas the neural network deviates by more than 80% and frequently predicts the wrong sign. These results demonstrate that causal AI provides both higher accuracy and explainability, paving the way for more efficient, trustworthy AMS design automation.

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Design, Simulation and Feasibility Analysis of Bifacial Solar PV System in Marine Drive Road, Cox's Bazar

This paper proposes a design and simulation based investigative analysis of a vertically mounted bifacial solar photovoltaic model in Marine Drive Road, Cox's Bazar. Cox's bazar is a famous tourist destination which seems to be a flexible site for implementing such energy harvesting system without affecting the nearby eco-system and solves the existing land shortage problem. Moreover, the infrastructure will provide insulation to noise related problem faced by nearby residents, arising from traffic noises. A model road of 200 meters is reconnoitered for energy harvesting by solar power using three prominent software namely PVSOL, PVsyst, and SAM where a promising mean annual yield of 70492.9 kWh is obtained, and the bifacial gain is calculated to be 12.26%. In addition, a deviation analysis is performed among each of the software and it is found that PVSOL and PVsyst have shown less deviation. Furthermore, a comprehensive financial analysis shows total installation cost to be 84759.74$.

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