Travelled to:
1 × Canada
1 × China
1 × Italy
1 × Sweden
1 × Taiwan
3 × USA
Collaborated with:
S.Mishra D.Kruse J.D.Wason M.Minakais B.Potsaid W.Gressick L.Lu ∅ R.J.Radke N.Chakraborty S.Akella F.P.Finger Charles C. Okaeme M.K.Jensen S.K.Gupta K.Kar L.Lagace T.Castiglia N.Chen S.Barry A.Cable J.Gorman N.G.Dagalakis K.Morgan J.Heald S.Müller A.Cunningham W.Keddy-Hector U.Sinha D.Whalen J.Braasch T.Zhang Y.Peles T.Tong J.Chang R.Prasher R.Zhou J.Frankel G.Lerner M.Unrath
Talks about:
control (9) robot (7) temperatur (4) build (4) model (3) base (3) thermal (2) design (2) applic (2) multi (2)
Person: John T. Wen
DBLP: Wen:John_T=
Contributed to:
Wrote 17 papers:
- CASE-2015-GuptaKMW #coordination #multi
- Incentive compatible mechanism for coordinated temperature control in multi-occupant buildings (SKG, KK, SM, JTW), pp. 438–443.
- CASE-2015-KruseW #predict
- Application of the Smith-Åström Predictor to robot force control (DK, JTW), pp. 383–388.
- CASE-2015-LuW
- Human-directed robot motion/force control for contact tasks in unstructured environments (LL, JTW), pp. 1165–1170.
- CASE-2015-MinakaisMWLC #design
- Design and instrumentation of an intelligent building testbed (MM, SM, JTW, LL, TC), pp. 1–6.
- CASE-2014-CunninghamKSWKBW #mobile #named
- Jamster: A mobile dual-arm assistive robot with Jamboxx control (AC, WKH, US, DW, DK, JB, JTW), pp. 509–514.
- CASE-2014-MinakaisMW #learning
- Groundhog Day: Iterative learning for building temperature control (MM, SM, JTW), pp. 948–953.
- CASE-2013-KruseRW #framework
- A sensor-based dual-arm tele-robotic manipulation platform (DK, RJR, JTW), pp. 350–355.
- CASE-2011-WasonW #architecture #automation #communication #library
- Robot Raconteur: A communication architecture and library for robotic and automation systems (JDW, JTW), pp. 761–766.
- CASE-2010-ChenPWBC #modelling #performance
- Modeling and control of a fast steering mirror in imaging applications (NC, BP, JTW, SB, AC), pp. 27–32.
- CASE-2010-ZhangWPTCPJ #analysis
- Micro-thermal-fluid transient analysis and active control for two-phase microelectronics cooling (TZ, JTW, YP, TT, JYC, RP, MKJ), pp. 750–755.
- CASE-2008-WasonGWMHM #modelling #process
- Model-based control of a high-temperature crystal growth process (JDW, WG, JTW, KM, JH, SM), pp. 486–491.
- CASE-2007-ChakrabortyAW #multi #set
- Coverage of a Planar Point Set with Multiple Constrained Robots (NC, SA, JTW), pp. 899–904.
- CASE-2007-WasonGWGD #multi
- Multi-Probe Micro-Assembly (JDW, WG, JTW, JG, NGD), pp. 63–68.
- CASE-2007-ZhouGWJFLU #precise
- Active Thermal Management for Precision Positioning (RZ, WG, JTW, MKJ, JF, GL, MU), pp. 45–50.
- CASE-2006-PotsaidWF #adaptation #automation
- Automation of Challenging Spatial-Temporal Biomedical Observations with the Adaptive Scanning Optical Microscope (ASOM) (BP, JTW, FPF), pp. 39–44.
- CASE-2006-Wen #collaboration #design #problem #research
- A Model for Industry-University Collaborative Research: Transforming Specific Problem Solution into Broad Design Methodologies (JTW), p. 1.
- CASE-2016-OkaemeMW #approach
- A comfort zone set-based approach for coupled temperature and humidity control in buildings (CCO, SM, JTW), pp. 456–461.