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Neural gain-scheduling Chebyshev polynomial based unified model network controller for linear parameter-varying systemsJENG, J. T.Control and intelligent systems. 2003, Vol 31, Num 3, pp 125-132, issn 1480-1752, 8 p.Article

Stabilization of non-holonomic chained systems by gain schedulingSHIH, C.-L; JENG, J.-T.International journal of systems science. 1999, Vol 30, Num 4, pp 441-449, issn 0020-7721Article

Mixing input-output pseudolinearization and gain scheduling techniques for stabilization of mobile robots with two independently driven wheelsJENG, J.-T; SHIH, C.-L; LEE, T.-T et al.Robotica (Cambridge. Print). 1997, Vol 15, pp 573-582, issn 0263-5747, 5Article

Research and some applications of High-Tc squidsYANG, H.-C; WANG, Shu-Yu; CHEN, Chin-Hao et al.Journal of low temperature physics. 2003, Vol 131, Num 3-4, pp 509-520, issn 0022-2291, 12 p.Conference Paper

The complex chebyshev polynomials based unified model (CCPBUM) neural networksJENG, J.-T; LEE, T.-T.SPIE proceedings series. 1998, pp 511-519, isbn 0-8194-2839-6Conference Paper

Nonlinear adaptive inverse control via the unified model neural networkJENG, J.-T; LEE, T.-T.SPIE proceedings series. 1999, pp 153-162, isbn 0-8194-3196-6Conference Paper

The chebyshev polynomials based (CPB) unified model neural network for the worst-case identification of nonlinear systems H∞ problemJENG, J.-T; LEE, T.-T.SPIE proceedings series. 1998, pp 520-530, isbn 0-8194-2839-6Conference Paper

Nonlinear adaptive inverse control for the magnetic bearing systemJENG, J.-T.Journal of magnetism and magnetic materials. 2000, Vol 209, Num 1-3, pp 186-188, issn 0304-8853Conference Paper

Chebyshev polynomials based (CPB) unified model neural networks for function approximationLEE, T.-T; JENG, J.-T.SPIE proceedings series. 1997, pp 372-381, isbn 0-8194-2492-7Conference Paper

Detection of small cracks using high-Tc SQUIDs in an unshielded environmentJENG, J. T; HORNG, H. E; YANG, H. C et al.Superconductor science & technology (Print). 2002, Vol 15, Num 3, pp 416-420, issn 0953-2048Article

Evaluation of the flaw depth using high-Tc SQUIDHORNG, H. E; JENG, J. T; YANG, H. C et al.Physica. C. Superconductivity and its applications. 2002, Vol 367, Num 1-4, pp 303-307Article

Detection of deep flaws by using a HTS-SQUID in unshielded environmentJENG, J. T; YANG, S. Y; HORNG, H. E et al.IEEE transactions on applied superconductivity. 2001, Vol 11, Num 1, pp 1295-1298, issn 1051-8223, 1Conference Paper

High-Tc Josephson junctions fabricated by focused ion beam direct millingWU, C. H; JHAN, F. J; CHEN, J. H et al.Superconductor science & technology (Print). 2013, Vol 26, Num 2, issn 0953-2048, 025010.1-025010.5Article

High-Tc SQUID magnetometers and gradiometers for NDE applicationJENG, J. T; HORNG, H. E; YANG, H. C et al.Physica. C. Superconductivity and its applications. 2002, Vol 368, Num 1-4, pp 105-108Conference Paper

Characteristics of the superconducting-quantum-interference-grating magnetometer consisting of grain-boundary josephson junctionsJENG, J. T; HUANG, K. H; WU, C. H et al.IEEE transactions on applied superconductivity. 2007, Vol 17, Num 2, pp 691-694, issn 1051-8223, 4 p., 1Conference Paper

Simulation of the magnetic field due to defects and verification using high-Tc SQUIDJENG, J. T; HORNG, H. E; YANG, H. C et al.Physica. C. Superconductivity and its applications. 2002, Vol 367, Num 1-4, pp 298-302Article

Influence of magnetic field on the flux motion in superconducting YBCO/PYBCO superlatticeHORNG, H. E; YANG, S. Y; JENG, J. T et al.IEEE transactions on applied superconductivity. 1997, Vol 7, Num 2, pp 1177-1180, issn 1051-8223, 2Conference Paper

Optimization of step-edge substrates for high-Tc superconducting devicesWU, C. H; CHEN, M. J; HSU, M. H et al.Physica. C. Superconductivity. 2005, Vol 433, Num 1-2, pp 108-114, issn 0921-4534, 7 p.Article

Nondestructive evaluation of flaws using SQUIDsJENG, J. T; HORNG, H. E; CHEN, Chao-Hsiang et al.Physica. C. Superconductivity and its applications. 2000, Vol 341-48, pp 2637-2638, 4Conference Paper

Integrated high-transition temperature SQUID-based voltmeters operated at 77 KYANG, H. C; CHEN, J. H; HORNG, H. E et al.IEEE transactions on applied superconductivity. 1999, Vol 9, Num 2, pp 4412-4415, issn 1051-8223, 3Conference Paper

Coherent phase locking of high-Tc YBa2Cu3Oy Josephson junctionsYANG, H. C; WU, C. H; CHEN, M. J et al.IEEE transactions on applied superconductivity. 2001, Vol 11, Num 1, pp 308-311, issn 1051-8223, 1Conference Paper

Voltage modulation of High-Tc SQUIDs with step-edge junctionsJENG, J. T; LIU, Y. C; YANG, S. Y et al.Physica. C. Superconductivity and its applications. 2000, Vol 341-48, pp 2701-2702, 4Conference Paper

Flux-to-voltage transfer function of the series-SQUID array with grain-boundary Josephson junctionsJENG, J. T; HUNG, H. C; LIN, C. R et al.IEEE transactions on applied superconductivity. 2005, Vol 15, Num 2, pp 793-796, issn 1051-8223, 4 p., 1Conference Paper

Transport studies of YBa2Cu3Oy/YxPr1-xBa2Cu3Oy and YBa2Cu3Oy/ R0.7M0-3MnO3 superlattices, in which R = La or Nd, and M = Ca or SrYANG, H. C; CHEN, J. C; WANG, L. M et al.The Journal of physics and chemistry of solids. 2001, Vol 62, Num 9-10, pp 1837-1846, issn 0022-3697Article

Temperature dependent characteristics of step-edge YBCO squidsHORNG, H. E; YANG, S. Y; JENG, J. T et al.Physica. C. Superconductivity and its applications. 2000, Vol 341-48, pp 2699-2700, 4Conference Paper

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