<?xml version="1.0" encoding="UTF-8"?><rss version="2.0"><channel><title>Electrical &amp; Computer Engineering Licensing Opportunites | Utah State University</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/electrical-computer-engineering.xml</link><description>Electrical &amp; Computer Engineering licensing opportunities tracked by USU Technology Transfer.</description><image><url>https://templateresources.usu.edu/_resources/assets/images/U-State.png</url><title>Utah State University</title><link>https://research.usu.edu/</link></image><language>en-us</language><category>News</category><item><title>LOgIQ: A Novel Multiplier-free Systolic Array Hardware Accelerator for Large Language AI Models</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/logiq-novel-multiplier-free-systolic-array-hardware-accelerator.php</link><description>Large language models (LLMs) have rapidly advanced state-of-the-art performance across domains, including question answering, summarization, code generation, and dialogue. As these models scale into billions of parameters and longer context windows, deplo</description><pubDate>Tuesday, 28 July 2026</pubDate></item><item><title>High-Bandwidth Control of Unfolding-based AC-DC Converters</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/high-bandwidth-control-of-unfolding-based-ac-dc-converters.php</link><description>This work presents a comprehensive examination of the challenges associated with achieving high-bandwidth control in T-type bridge-based dc-dc converters used in unfolding-based ac-dc systems. High-bandwidth control is essential for maintaining grid-side </description><pubDate>Tuesday, 5 May 2026</pubDate></item><item><title>Acoustic Echo Cancellation During Doubletalk using Convolutive Blind Source Separation of Signals having Temporal Dependence</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/acoustic-echo-cancellation-during-doubletalk.php</link><description>The Acoustic Echo Cancellation offers a novel method of echo cancellation using convolutive blind source separation. This method reduces distortion, like an echo or feedback, that may occur when an audio input device like a microphone is near an audio out</description><pubDate>Wednesday, 8 April 2026</pubDate></item><item><title>STRIVE: Empowering a Low Power Tensor Processing Unit with Fault Detection and Error Resilience</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/strive-empowering-a-low-power-tensor-processing-unit.php</link><description>The error-resilient systolic array seeks to solve the challenges of fault-prone AI inference architectures at the edge. It achieves this through a low overhead detection technique for faulty Multiply-Accumulate (MAC) units in a systolic array AI hardware.</description><pubDate>Wednesday, 1 April 2026</pubDate></item><item><title>Shared Grading: An Approach to Increase Student Learning and Reduce Grading Burden</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/shared-grading-an-approach-to-increase-student-learning-and-reduce-grading-burden.php</link><description>The described approach decreases grading burden and enhances learning experiences by requiring students to grade one another’s work in large classes. Additional interaction with the material allows for greater comprehension of each topic. The accuracy of </description><pubDate>Friday, 13 March 2026</pubDate></item><item><title>Intelligent Urgent Stop for Autonomous Vehicles</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/intelligent-urgent-stop.php</link><description>As the presence of autonomous vehicles grows in the world, so does the need for an automated intelligent system that can safely stop these vehicles in any setting. To ensure a reliable and consistent emergency stop for autonomous systems across various ve</description><pubDate>Tuesday, 9 September 2025</pubDate></item><item><title>GeoTracking Computer for Multiple Instrumentation Applications</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/geotracking-computer-for-multiple-instrumentation-applications.php</link><description>A low-cost sensor computer with related software application to measure and collect several features of sensor data like that of acceleration, temperature, pressure, altitude, GPS location, speed, time, and distance of a moving object. A smart device can </description><pubDate>Monday, 23 June 2025</pubDate></item><item><title>Gesture and Rhythm User Input Using A Standard Keyboard</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/gesture-and-rhythm-user-input-using-a-standard-keyboard.php</link><description>This rhythm and gesture keyboard provides an accessible and convenient method of password entry that strengthens security and requires no new hardware.</description><pubDate>Friday, 6 June 2025</pubDate></item><item><title>Design Methodology for Parallel Resonant Series-series (PRSS) Tuning for Wireless Inductive Power Transfer Systems</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/design-methodology-for-prss-tuning.php</link><description>Wireless inductive power transfer (IPT) is a fast-growing market with demand from phone and other mobile device charging, implantable medical devices, electric vehicle charging, etc. This technology has always faced the challenge of misalignment between t</description><pubDate>Monday, 28 April 2025</pubDate></item><item><title>High Frequency Medium Voltage Transformer</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/high-frequency-medium-voltage-transformer.php</link><description>Transformers convert a high voltage from the grid to a more useful level. USU researchers have developed a high frequency, medium voltage transformer design that confines areas of high electric field stress to small areas that are easily encapsulated with</description><pubDate>Thursday, 24 April 2025</pubDate></item><item><title>High-Power Field-Focusing Circuit Topology for Dynamic Wireless Power Transfer Systems</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/high-power-field-focusing-circuit-topology.php</link><description>USU Researchers have developed a self-regulating system that utilizes field-focusing techniques to maximize efficient dynamic wireless power transfer, primarily for electric vehicles. The technology has been tested in laboratory conditions and data acquis</description><pubDate>Thursday, 10 April 2025</pubDate></item><item><title>Control of DC-DC Power Converters with Battery Cell Inputs and Series and Parallel Outputs</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/control-of-dc-dc-power-converters.php</link><description>USU researchers have developed a control scheme that eliminates the drawbacks of conventional control architectures in battery packs. One aspect of the invention permits stable operation of the battery pack in both charging and discharging conditions. Ano</description><pubDate>Wednesday, 9 April 2025</pubDate></item><item><title>Unfolder-Based Single-Stage AC-AC Conversion System for Wireless Charging Applications</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/unfolder-base-single-stage-ac-ac-conversion-system.php</link><description>Researchers at USU have developed a method to convert between AC current frequencies in a single stage, a method that has proven more effective than previous common two-stage approaches, simplifying grid-side requirements and lowering harmonic distortion.</description><pubDate>Tuesday, 1 April 2025</pubDate></item><item><title>Multi-mode Control of Hybrid Battery Packs</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/multi-mode-control-of-hybrid-battery-packs.php</link><description>This technology improves electric vehicle battery life and efficiency by improving balancing methods between separate power cells. By using a low-power energy transfer unit (ETU) integrated within the composite hybrid energy storage system (CHESS) archite</description><pubDate>Thursday, 20 March 2025</pubDate></item><item><title>Adaptive Control for Zero-Voltage Switching of a T-type Bridge in Unfolding-Based AC-DC Converter System (ASPIRE)</title><link>https://research.usu.edu/rii/tech-transfer/licensing-opportunities/technologies/adaptive-control-for-zero-voltage-switching.php</link><description>A controller method for determining the minimum current and minimum time required for zero-voltage switching in a T-type bridge-based resonant AC-DC converter to maximize efficiency.</description><pubDate>Friday, 14 March 2025</pubDate></item></channel></rss>