Shantanu Chakrabartty
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2010 – today
- 2018
- [j45]M. H. Afifi, Liang Zhou, Shantanu Chakrabartty, Jian Ren:
Dynamic Authentication Protocol Using Self-Powered Timers for Passive Internet of Things. IEEE Internet of Things Journal 5(4): 2927-2935 (2018) - [j44]Liang Zhou, Kenji Aono, Shantanu Chakrabartty:
A CMOS Timer-Injector Integrated Circuit for Self-Powered Sensing of Time-of-Occurrence. J. Solid-State Circuits 53(5): 1539-1549 (2018) - [j43]Mingquan Yuan, Qisheng Jiang, Keng-ku Liu, Srikanth Singamaneni, Shantanu Chakrabartty:
Towards an Integrated QR Code Biosensor: Light-Driven Sample Acquisition and Bacterial Cellulose Paper Substrate. IEEE Trans. Biomed. Circuits and Systems 12(3): 452-460 (2018) - [j42]Sri Harsha Kondapalli, Yarub Alazzawi, Marcin Malinowski, Tomasz Timek, Shantanu Chakrabartty:
Feasibility of Self-Powering and Energy Harvesting Using Cardiac Valvular Perturbations. IEEE Trans. Biomed. Circuits and Systems 12(6): 1392-1400 (2018) - [j41]Sri Harsha Kondapalli, Yarub Alazzawi, Marcin Malinowski, Tomasz Timek, Shantanu Chakrabartty:
Multiaccess In Vivo Biotelemetry Using Sonomicrometry and M-Scan Ultrasound Imaging. IEEE Trans. Biomed. Engineering 65(1): 149-158 (2018) - [j40]Ahana Gangopadhyay, Oindrila Chatterjee, Shantanu Chakrabartty:
Extended Polynomial Growth Transforms for Design and Training of Generalized Support Vector Machines. IEEE Trans. Neural Netw. Learning Syst. 29(5): 1961-1974 (2018) - [j39]Ahana Gangopadhyay, Shantanu Chakrabartty:
Spiking, Bursting, and Population Dynamics in a Network of Growth Transform Neurons. IEEE Trans. Neural Netw. Learning Syst. 29(6): 2379-2391 (2018) - [j38]Oindrila Chatterjee, Shantanu Chakrabartty:
Decentralized Global Optimization Based on a Growth Transform Dynamical System Model. IEEE Trans. Neural Netw. Learning Syst. 29(12): 6052-6061 (2018) - [c70]Kenji Aono, Hassene Hasni, Owen Pochettino, Nizar Lajnef, Shantanu Chakrabartty:
Quasi-self-powered Infrastructural Internet of Things: The Mackinac Bridge Case Study. ACM Great Lakes Symposium on VLSI 2018: 335-340 - [c69]M. H. Afifi, Liang Zhou, Shantanu Chakrabartty, Jian Ren:
HPMAP: A Hash-Based Privacy-Preserving Mutual Authentication Protocol for Passive IoT Devices Using Self-Powered Timers. ICC 2018: 1-6 - [c68]Ahana Gangopadhyay, Oindrila Chatterjee, Shantanu Chakrabartty:
Continuous-time Optimization using Sub-threshold Current-mode Growth Transform Circuits. MWSCAS 2018: 246-249 - [c67]Darshit Mehta, Liang Zhou, Kenji Aono, Shantanu Chakrabartty:
Self-powered Sensing and Time-Stamping of Tampering Events. MWSCAS 2018: 968-971 - [c66]Liang Zhou, Kenji Aono, Shantanu Chakrabartty:
Gaussian Process Regression for Improving the Performance of Self-powered Time-of-Occurrence Sensors. MWSCAS 2018: 996-999 - [c65]Sri Harsha Kondapalli, Owen Pochettino, Kenji Aono, Shantanu Chakrabartty:
Hybrid-Powered Internet-of-Things for Infrastructure-to-Vehicle Communication. MWSCAS 2018: 1000-1003 - [i3]Oindrila Chatterjee, Shantanu Chakrabartty:
A Unified Perspective of Evolutionary Game Dynamics Using Generalized Growth Transforms. CoRR abs/1811.02010 (2018) - 2017
- [j37]Saptarshi Das, Hadi Salehi, Yan Shi, Shantanu Chakrabartty, Rigoberto Burgueno, Subir Biswas:
Towards packet-less ultrasonic sensor networks for energy-harvesting structures. Computer Communications 101: 94-105 (2017) - [j36]Liang Zhou, Shantanu Chakrabartty:
Linearization of CMOS Hot-Electron Injectors for Self-Powered Monitoring of Biomechanical Strain Variations. IEEE Trans. Biomed. Circuits and Systems 11(2): 446-454 (2017) - [j35]Hassan Aqeel Khan, Amit Gore, Jeffrey Ashe, Shantanu Chakrabartty:
Virtual Spirometry and Activity Monitoring Using Multichannel Electrical Impedance Plethysmographs in Ambulatory Settings. IEEE Trans. Biomed. Circuits and Systems 11(4): 832-848 (2017) - [j34]Philipp Häfliger, Shantanu Chakrabartty, Z. Wang:
Guest Editorial ISCAS 2016 Special Issue. IEEE Trans. Biomed. Circuits and Systems 11(5): 977-978 (2017) - [c64]Hassan Aqeel Khan, Amit Gore, Jeffrey Ashe, Shantanu Chakrabartty:
Physical activity classification using time-frequency signatures of motion artifacts in multi-channel electrical impedance plethysmographs. EMBC 2017: 2944-2947 - [c63]Kenji Aono, Shantanu Chakrabartty, Toshihiko Yamasaki:
Infrasonic scene fingerprinting for authenticating speaker location. ICASSP 2017: 361-365 - [c62]Sri Harsha Kondapalli, Xuan Zhang, Shantanu Chakrabartty:
Variance-based digital logic for energy harvesting Internet-of-Things. ISCAS 2017: 1-4 - [c61]John MacKay, Ahana Gangopadhyay, Shantanu Chakrabartty:
FPGA demonstration of spiking support vector networks based on growth transform neurons. ISCAS 2017: 1 - [c60]Darshit Mehta, Ege Altan, Rishabh Chandak, Baranidharan Raman, Shantanu Chakrabartty:
Behaving cyborg locusts for standoff chemical sensing. ISCAS 2017: 1-4 - [c59]Darshit Mehta, Ege Altan, Rishabh Chandak, Baranidharan Raman, Shantanu Chakrabartty:
Live demonstration: Behaving cyborg locusts for standoff chemical sensing. ISCAS 2017: 1 - [c58]Brittany Scheid, Shantanu Chakrabartty:
Feasibility of hybrid ultrasound-electrical nerve stimulation for electroceuticals. ISCAS 2017: 1-4 - [c57]Mingquan Yuan, Keng-ku Liu, Srikanth Singamaneni, Shantanu Chakrabartty:
Analyte sampling in paper biosensors powered by graphite-based light absorption. ISCAS 2017: 1-4 - [c56]Liang Zhou, Shantanu Chakrabartty:
Secure dynamic authentication of passive assets and passive IoTs using self-powered timers. ISCAS 2017: 1-4 - [i2]Sri Harsha Kondapalli, Xuan Zhang, Shantanu Chakrabartty:
Energy-dissipation Limits in Variance-based Computing. CoRR abs/1707.06363 (2017) - [i1]Liang Zhou, Sri Harsha Kondapalli, Shantanu Chakrabartty:
A Fowler-Nordheim Integrator can Track the Density of Prime Numbers. CoRR abs/1711.11032 (2017) - 2016
- [j33]Mingquan Yuan, Evangelyn C. Alocilja, Shantanu Chakrabartty:
Self-Powered Wireless Affinity-Based Biosensor Based on Integration of Paper-Based Microfluidics and Self-Assembled RFID Antennas. IEEE Trans. Biomed. Circuits and Systems 10(4): 799-806 (2016) - [j32]Mingquan Yuan, Keng-ku Liu, Srikanth Singamaneni, Shantanu Chakrabartty:
Self-Powered Forward Error-Correcting Biosensor Based on Integration of Paper-Based Microfluidics and Self-Assembled Quick Response Codes. IEEE Trans. Biomed. Circuits and Systems 10(5): 963-971 (2016) - [j31]Liang Zhou, Adam C. Abraham, Simon Y. Tang, Shantanu Chakrabartty:
A 5 nW Quasi-Linear CMOS Hot-Electron Injector for Self-Powered Monitoring of Biomechanical Strain Variations. IEEE Trans. Biomed. Circuits and Systems 10(6): 1143-1151 (2016) - [j30]Wassim Borchani, Kenji Aono, Nizar Lajnef, Shantanu Chakrabartty:
Monitoring of Postoperative Bone Healing Using Smart Trauma-Fixation Device With Integrated Self-Powered Piezo-Floating-Gate Sensors. IEEE Trans. Biomed. Engineering 63(7): 1463-1472 (2016) - [j29]Tao Feng, Nizar Lajnef, Shantanu Chakrabartty:
Design of a CMOS System-on-Chip for Passive, Near-Field Ultrasonic Energy Harvesting and Back-Telemetry. IEEE Trans. VLSI Syst. 24(2): 544-554 (2016) - [c55]Liang Zhou, Adam C. Abraham, Simon Y. Tang, Shantanu Chakrabartty:
Approaching the limits of piezoelectricity driven hot-electron injection for self-powered in vivo monitoring of micro-strain variations. ISCAS 2016: 1810-1813 - [c54]Yarub Alazzawi, Shantanu Chakrabartty:
Design of CMOS telemetry circuits for in-vivo wireless sonomicrometry. ISCAS 2016: 2022-2025 - [c53]Kenji Aono, Nizar Lajnef, Fred Faridazar, Shantanu Chakrabartty:
Infrastructural health monitoring using self-powered Internet-of-Things. ISCAS 2016: 2058-2061 - [c52]Liang Zhou, Shantanu Chakrabartty:
Self-powered sensing and time-stamping of rare events using CMOS Fowler-Nordheim tunneling timers. ISCAS 2016: 2839-2842 - 2015
- [j28]Tao Feng, Kenji Aono, Tracey Covassin, Shantanu Chakrabartty:
Self-Powered Monitoring of Repeated Head Impacts Using Time-Dilation Energy Measurement Circuit. IEEE Trans. Biomed. Circuits and Systems 9(2): 217-226 (2015) - [j27]Hassan Aqeel Khan, Shantanu Chakrabartty:
On the Channel Capacity of High-Throughput Proteomic Microarrays. T-MBMC 1(1): 50-61 (2015) - [c51]Liang Zhou, Shantanu Chakrabartty:
Design of low-Gm transconductors using varactor-based degeneration and linearization technique. BioCAS 2015: 1-4 - [c50]Yarub Alazzawi, Chunqui Qian, Shantanu Chakrabartty:
Feasibility of non-contact ultrasound generation using implanted metallic surfaces as electromagnetic acoustic transducers. BioCAS 2015: 1-4 - [c49]Mingquan Yuan, Evangelyn C. Alocilja, Shantanu Chakrabartty:
Self-powered wireless biosensing based on integration of paper-based microfluidics with self-assembling RFID antennas. BioCAS 2015: 1-4 - [c48]Biyi Fang, Tao Feng, Mi Zhang, Shantanu Chakrabartty:
Feasibility of B-mode diagnostic ultrasonic energy transfer and telemetry to a cm2 sized deep-tissue implant. ISCAS 2015: 782-785 - [c47]Mingquan Yuan, Premjeet Chahal, Evangelyn C. Alocilja, Shantanu Chakrabartty:
Sensing by growing antennas: A novel approach for designing passive RFID based biosensors. ISCAS 2015: 2121-2124 - [c46]Liang Zhou, Shantanu Chakrabartty:
A continuous-time varactor-based temperature compensation circuit for floating-gate multipliers and inner-product circuits. ISCAS 2015: 2513-2516 - 2014
- [j26]Ming Gu, Shantanu Chakrabartty:
Design of a Programmable Gain, Temperature Compensated Current-Input Current-Output CMOS Logarithmic Amplifier. IEEE Trans. Biomed. Circuits and Systems 8(3): 423-431 (2014) - [j25]Thanh Trung Nguyen, Tao Feng, Philipp Häfliger, Shantanu Chakrabartty:
Hybrid CMOS Rectifier Based on Synergistic RF-Piezoelectric Energy Scavenging. IEEE Trans. on Circuits and Systems 61-I(12): 3330-3338 (2014) - [c45]Ming Gu, Shantanu Chakrabartty:
A bias-scalable current-mode analog support vector machine based on margin propagation. ISCAS 2014: 273-276 - [c44]Nizar Lajnef, Rigoberto Burgueno, Wassim Borchani, Shantanu Chakrabartty:
Sub-Hz self-powered sensing based on mechanical-buckling driven hot-electron injection. ISCAS 2014: 670-673 - [c43]Liang Zhou, Shantanu Chakrabartty:
A 7-transistor-per-cell, high-density analog storage array with 500µV update accuracy and greater than 60dB linearity. ISCAS 2014: 1572-1575 - [c42]Kenji Aono, Tracey Covassin, Shantanu Chakrabartty:
Monitoring of repeated head impacts using time-dilation based self-powered sensing. ISCAS 2014: 1620-1623 - 2013
- [j24]Kenji Aono, Ravi Krishna Shaga, Shantanu Chakrabartty:
Exploiting Jump-Resonance Hysteresis in Silicon Auditory Front-Ends for Extracting Speaker Discriminative Formant Trajectories. IEEE Trans. Biomed. Circuits and Systems 7(4): 389-400 (2013) - [j23]Pikul Sarkar, Chenling Huang, Shantanu Chakrabartty:
An Ultra-Linear Piezo-Floating-Gate Strain-Gauge for Self-Powered Measurement of Quasi-Static-Strain. IEEE Trans. Biomed. Circuits and Systems 7(4): 437-450 (2013) - [j22]Ming Gu, Shantanu Chakrabartty:
FAST: A Framework for Simulation and Analysis of Large-Scale Protein-Silicon Biosensor Circuits. IEEE Trans. Biomed. Circuits and Systems 7(4): 451-459 (2013) - [j21]Pikul Sarkar, Shantanu Chakrabartty:
Compressive Self-Powering of Piezo-Floating-Gate Mechanical Impact Detectors. IEEE Trans. on Circuits and Systems 60-I(9): 2311-2320 (2013) - [j20]Shantanu Chakrabartty, Ravi Krishna Shaga, Kenji Aono:
Noise-Shaping Gradient Descent-Based Online Adaptation Algorithms for Digital Calibration of Analog Circuits. IEEE Trans. Neural Netw. Learning Syst. 24(4): 554-565 (2013) - [c41]Liang Zhou, Pikul Sarkar, Shantanu Chakrabartty:
Scavenging thermal-noise energy for implementing long-term self-powered CMOS timers. ISCAS 2013: 2203-2206 - [c40]Pikul Sarkar, Shantanu Chakrabartty:
A compressive piezoelectric front-end circuit for self-powered mechanical impact detectors. ISCAS 2013: 2207-2210 - 2012
- [j19]Chenling Huang, Shantanu Chakrabartty:
An Asynchronous Analog Self-Powered CMOS Sensor-Data-Logger With a 13.56 MHz RF Programming Interface. J. Solid-State Circuits 47(2): 476-489 (2012) - [j18]Ming Gu, Shantanu Chakrabartty:
Subthreshold, Varactor-Driven CMOS Floating-Gate Current Memory Array With Less Than 150-ppm/°K Temperature Sensitivity. J. Solid-State Circuits 47(11): 2846-2856 (2012) - [j17]Amin Fazel, Shantanu Chakrabartty:
Sparse Auditory Reproducing Kernel (SPARK) Features for Noise-Robust Speech Recognition. IEEE Trans. Audio, Speech & Language Processing 20(4): 1362-1371 (2012) - [j16]Ming Gu, Shantanu Chakrabartty:
Synthesis of Bias-Scalable CMOS Analog Computational Circuits Using Margin Propagation. IEEE Trans. on Circuits and Systems 59-I(2): 243-254 (2012) - [c39]Pikul Sarkar, Chenling Huang, Shantanu Chakrabartty:
A self-powered static-strain sensor based on differential linear piezo-floating-gate injectors. ISCAS 2012: 1167-1170 - [c38]Ming Gu, Shantanu Chakrabartty:
Varactor-driven temperature compensation of CMOS floating-gate current memory. ISCAS 2012: 2095-2098 - [c37]Ravi Krishna Shaga, Shantanu Chakrabartty:
ΣΔ gradient-descent learning for online real-time calibration of digitally-assisted analog circuits. ISCAS 2012: 2885-2888 - 2011
- [j15]Ming Gu, Shantanu Chakrabartty:
A 100 pJ/bit, (32, 8) CMOS Analog Low-Density Parity-Check Decoder Based on Margin Propagation. J. Solid-State Circuits 46(6): 1433-1442 (2011) - [j14]Chenling Huang, Pikul Sarkar, Shantanu Chakrabartty:
Rail-to-Rail, Linear Hot-Electron Injection Programming of Floating-Gate Voltage Bias Generators at 13-Bit Resolution. J. Solid-State Circuits 46(11): 2685-2692 (2011) - [j13]Shantanu Chakrabartty, Viktor Öwall:
Guest Editorial - ISCAS 2010 Special Issue. IEEE Trans. Biomed. Circuits and Systems 5(2): 101-102 (2011) - [c36]Ming Gu, Shantanu Chakrabartty:
An adaptive analog low-density parity-check decoder based on margin propagation. ISCAS 2011: 1315-1318 - [c35]Amin Fazel, Shantanu Chakrabartty:
Sparse kernel cepstral coefficients (SKCC): Inner-product based features for noise-robust speech recognition. ISCAS 2011: 2401-2404 - [c34]Chenling Huang, Shantanu Chakrabartty:
A hybrid energy scavenging sensor for long-term mechanical strain monitoring. ISCAS 2011: 2473-2476 - 2010
- [j12]Chenling Huang, Nizar Lajnef, Shantanu Chakrabartty:
Calibration and Characterization of Self-Powered Floating-Gate Usage Monitor With Single Electron per Second Operational Limit. IEEE Trans. on Circuits and Systems 57-I(3): 556-567 (2010) - [j11]Amit Gore, Shantanu Chakrabartty:
A Min-Max Optimization Framework for Designing SigmaDelta Learners: Theory and Hardware. IEEE Trans. on Circuits and Systems 57-I(3): 604-617 (2010) - [j10]Amit Gore, Amin Fazel, Shantanu Chakrabartty:
Far-Field Acoustic Source Localization and Bearing Estimation Using SigmaDelta Learners. IEEE Trans. on Circuits and Systems 57-I(4): 783-792 (2010) - [j9]Amin Fazel, Amit Gore, Shantanu Chakrabartty:
Resolution enhancement in SigmaDelta learners for superresolution source separation. IEEE Trans. Signal Processing 58(3): 1193-1204 (2010) - [c33]Chenling Huang, Shantanu Chakrabartty:
A temperature compensated array of CMOS floating-gate analog memory. ISCAS 2010: 109-112 - [c32]Shantanu Chakrabartty, Shih-Chii Liu:
Exploiting spike-based dynamics in a silicon cochlea for speaker identification. ISCAS 2010: 513-516 - [c31]Amin Fazel, Shantanu Chakrabartty:
Sigma-delta learning for super-resolution source separation on high-density microphone arrays. ISCAS 2010: 797-800 - [c30]Ming Gu, Yang Liu, Shantanu Chakrabartty:
FAST: A simulation framework for solving large-scale probabilistic inverse problems in nano-biomolecular circuits. ISCAS 2010: 3160-3163
2000 – 2009
- 2009
- [j8]Yang Liu, Shantanu Chakrabartty:
Factor Graph-Based Biomolecular Circuit Analysis for Designing Forward Error Correcting Biosensors. IEEE Trans. Biomed. Circuits and Systems 3(3): 150-159 (2009) - [c29]Ming Gu, Kiran Misra, Hayder Radha, Shantanu Chakrabartty:
Sparse Decoding of Low Density Parity Check Codes Using Margin Propagation. GLOBECOM 2009: 1-6 - [c28]Amin Fazel, Shantanu Chakrabartty:
Non-linear Filtering in Reproducing Kernel Hilbert Spaces for Noise-robust Speaker Verification. ISCAS 2009: 113-116 - [c27]Shantanu Chakrabartty, Nizar Lajnef:
Infrasonic Power-harvesting and Nanowatt Self-powered Sensors. ISCAS 2009: 157-160 - [c26]Yu M. Chi, Adeel Abbas, Shantanu Chakrabartty, Gert Cauwenberghs:
An Active Pixel CMOS Separable Transform Image Sensor. ISCAS 2009: 1281-1284 - [c25]Chenling Huang, Shantanu Chakrabartty:
Reducing Indirect Programming Mismatch Due to Oxide-traps using Dual-channel Floating-gate Transistors. ISCAS 2009: 1783-1786 - [c24]Yang Liu, Deng Zhang, Evangelyn C. Alocilja, Shantanu Chakrabartty:
Design and Characterization of a Silver-enhanced Gold Nanoparticle-based Biochip. ISCAS 2009: 2433-2436 - [c23]Shantanu Chakrabartty, Amit Gore:
Sigma-delta Analog to LPC Feature Converters for Portable Recognition Interfaces. ISCAS 2009: 2673-2676 - 2008
- [j7]Nizar Lajnef, Niell Elvin, Shantanu Chakrabartty:
A Piezo-Powered Floating-Gate Sensor Array for Long-Term Fatigue Monitoring in Biomechanical Implants. IEEE Trans. Biomed. Circuits and Systems 2(3): 164-172 (2008) - [c22]Amin Fazel, Shantanu Chakrabartty:
Sigma-delta resolution enhancement for far-field acoustic source separation. ICASSP 2008: 1917-1920 - [c21]Nizar Lajnef, Shantanu Chakrabartty, Niell Elvin:
Calibration and characterization of self-powered floating-gate sensor arrays for long-term fatigue monitoring. ISCAS 2008: 1096-1099 - [c20]Yang Liu, Shantanu Chakrabartty:
Computer aided simulation and verification of forward error-correcting biosensors. ISCAS 2008: 1826-1829 - [c19]Yang Liu, Shantanu Chakrabartty, Evangelyn C. Alocilja:
A multiplexed biosensor based on biomolecular nanowires. ISCAS 2008: 2006-2009 - [c18]Amin Fazel, Shantanu Chakrabartty:
Sigma-delta learning for super-resolution independent component analysis. ISCAS 2008: 2997-3000 - 2007
- [j6]Veera Venkataramani, Shantanu Chakrabartty, William Byrne:
Ginisupport vector machines for segmental minimum Bayes risk decoding of continuous speech. Computer Speech & Language 21(3): 423-442 (2007) - [j5]Shantanu Chakrabartty, Gert Cauwenberghs:
Gini Support Vector Machine: Quadratic Entropy Based Robust Multi-Class Probability Regression. Journal of Machine Learning Research 8: 813-839 (2007) - [j4]Shantanu Chakrabartty, Yunbin Deng, Gert Cauwenberghs:
Robust Speech Feature Extraction by Growth Transformation in Reproducing Kernel Hilbert Space. IEEE Trans. Audio, Speech & Language Processing 15(6): 1842-1849 (2007) - [j3]Chhay Kong, Shantanu Chakrabartty:
Analog Iterative LDPC Decoder Based on Margin Propagation. IEEE Trans. on Circuits and Systems 54-II(12): 1140-1144 (2007) - [c17]Nizar Lajnef, Shantanu Chakrabartty, Niell Elvin, Alex Elvin:
Piezo-powered floating gate injector for self-powered fatigue monitoring in biomechanical implants. ISCAS 2007: 89-92 - [c16]Paul Kucher, Shantanu Chakrabartty:
An Energy-Scalable Margin Propagation-Based Analog VLSI Support Vector Machine. ISCAS 2007: 1289-1292 - 2006
- [j2]Amit Gore, Shantanu Chakrabartty, Sudeshna Pal, Evangelyn C. Alocilja:
A Multichannel Femtoampere-Sensitivity Potentiostat Array for Biosensing Applications. IEEE Trans. on Circuits and Systems 53-I(11): 2357-2363 (2006) - [c15]Paul Kucher, Shantanu Chakrabartty:
An adaptive CMOS imager with time-based compressive active-pixel response. ISCAS 2006 - [c14]
- 2005
- [c13]Shantanu Chakrabartty, Gert Cauwenberghs:
Fixed-current method for programming large floating-gate arrays. ISCAS (4) 2005: 3934-3937 - 2004
- [c12]Shantanu Chakrabartty, Yunbin Deng, Gert Cauwenberghs:
Robust speech feature extraction by growth transformation in reproducing kernel Hilbert space. ICASSP (1) 2004: 133-136 - [c11]Yunbin Deng, Shantanu Chakrabartty, Gert Cauwenberghs:
Three-decade programmable fully differential linear OTA. ISCAS (1) 2004: 697-700 - [c10]Shantanu Chakrabartty, Gert Cauwenberghs:
Margin normalization and propagation in analog VLSI. ISCAS (1) 2004: 901-904 - [c9]Shantanu Chakrabartty, Gert Cauwenberghs:
Sub-Microwatt Analog VLSI Support Vector Machine for Pattern Classification and Sequence Estimation. NIPS 2004: 249-256 - 2003
- [j1]Roman Genov, Shantanu Chakrabartty, Gert Cauwenberghs:
Silicon Support Vector Machine with On-Line Learning. IJPRAI 17(3): 385-404 (2003) - [c8]Shantanu Chakrabartty, Gert Cauwenberghs:
Expectation Maximization of Forward Decoding Kernel Machines. AISTATS 2003 - [c7]Shantanu Chakrabartty, Gert Cauwenberghs, Jayadeva:
Sparse Probability Regression by Label Partitioning. COLT 2003: 231-242 - [c6]Shantanu Chakrabartty, Masakazu Yagi, Tadashi Shibata, Gert Cauwenberghs:
Robust cephalometric landmark identification using support vector machines. ICASSP (2) 2003: 825-828 - [c5]Shantanu Chakrabartty, Masakazu Yagi, Tadashi Shibata, Gert Cauwenberghs:
Robust cephalometric landmark identification using support vector machines. ICME 2003: 429-432 - [c4]Shantanu Chakrabartty, Gert Cauwenberghs:
Power dissipation limits and large margin in wireless sensors. ISCAS (4) 2003: 832-835 - 2002
- [c3]Shantanu Chakrabartty, Gert Cauwenberghs:
Sequence estimation and channel equalization using forward decoding kernel machines. ICASSP 2002: 2669-2672 - [c2]Shantanu Chakrabartty, Gert Cauwenberghs:
Forward-Decoding Kernel-Based Phone Recognition. NIPS 2002: 1165-1172 - [c1]Shantanu Chakrabartty, Gert Cauwenberghs:
Forward Decoding Kernel Machines: A Hybrid HMM/SVM Approach to Sequence Recognition. SVM 2002: 278-292