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The "Wearable Sign Language Interpreter: Real-Time Gesture Recognition and Audio Synthesis System Using Flex Sensors and Accelerometer" project introduces an innovative solution designed to facilitate communication for individuals with hearing impairments. Leveraging advancements in sensor technology, signal processing algorithms, and wearable computing, this system aims to bridge the gap between sign language users and non-signers in real-time communication scenarios. By integrating flex sensors and an accelerometer into a wearable device, the system accurately captures and interprets sign language gestures, converting them into audible speech output. This real-time translation capability not only enhances accessibility for the hearing impaired but also promotes inclusivity by enabling seamless interaction with individuals who may not be proficient in sign language. The project's implementation involves a comprehensive design approach encompassing hardware development, sensor calibration, gesture recognition algorithms, audio synthesis techniques, and user interface design. Through rigorous testing and evaluation, the system demonstrates its efficacy in accurately recognizing a wide range of sign language gestures and producing intelligible speech output. The potential impact of this technology extends to various domains, including education, healthcare, and everyday communication, where improved accessibility and communication tools can significantly enhance quality of life for individuals with hearing impairments.

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