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Peak-Based Philips Fingerprint Robust To Pitch-Shift For Massive Audio Retrieval.

, , , and . BigMM, page 314-320. IEEE, (2019)

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Multi-objective niching quantum genetic algorithm-based optimization method for pneumatic hammer structure., , , , , and . Expert Syst. Appl., 238 (Part C): 122047 (March 2024)HapTag: A Compact Actuator for Rendering Push-Button Tactility on Soft Surfaces., , , , , , , , , and 1 other author(s). UIST, page 70:1-70:11. ACM, (2022)AWLloss: Speaker Verification Based on the Quality and Difficulty of Speech., , , , and . IEEE Signal Process. Lett., (2023)Topological Classification and Determination of Non-Degenerate Intersections of Two Dupin Cyclides., and . Comput. Aided Des., (2022)Peak-Based Philips Fingerprint Robust To Pitch-Shift For Massive Audio Retrieval., , , and . BigMM, page 314-320. IEEE, (2019)An Efficient Cascaded Filtering Retrieval Method for Big Audio Data., , and . BigMM, page 108-115. IEEE Computer Society, (2015)A Sampling and Counting Method for Big Audio Retrieval., , and . BigMM, page 307-313. IEEE Computer Society, (2016)A Multi-tasking Model of Speaker-Keyword Classification for Keeping Human in the Loop of Drone-assisted Inspection., , , , , and . CoRR, (2022)Enhancing Sampling and Counting Method for Audio Retrieval with Time-Stretch Resistance., , and . BigMM, page 1-5. IEEE, (2018)Text-Independent Speaker Verification Based on Mutual Information Disentanglement., , and . WISA, volume 14094 of Lecture Notes in Computer Science, page 309-318. Springer, (2023)