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Fault-tolerant evolvable hardware using field-programmable transistor arrays., , , и . IEEE Trans. Reliab., 49 (3): 305-316 (2000)On-line Model-based Learning using Evolvable Hardware for a Robotics Tracking System, , , и . Genetic Programming 1998: Proceedings of the Third Annual Conference, стр. 816--823. University of Wisconsin, Madison, Wisconsin, USA, Morgan Kaufmann, (22-25 July 1998)Reconfigurable Electronics for Extreme Environments., , , и . Evolvable Hardware, Springer, (2006)Integrating the Electronics of the Control-Loops of the JPL/Boeing Gyroscope Within an Evolvable Hardware Architecture., , , и . FPL, стр. 1-4. IEEE, (2006)Self-recovery experiments in extreme environments using a field programmable transistor array., , , , , , и . FPT, стр. 9-15. IEEE, (2004)Off-Line Model-Free and On-Line Model-Based Evolution for Tracking Navigation Using Evolvable Hardware., , , , , и . EvoRobot, том 1468 из Lecture Notes in Computer Science, стр. 211-226. Springer, (1998)Temperature-Adaptive Circuits on Reconfigurable Analog Arrays., , , , , и . AHS, стр. 28-31. IEEE Computer Society, (2006)R3TOS-Based Integrated Modular Space Avionics for On-Board Real-Time Data Processing., , , , и . AHS, стр. 1-8. IEEE, (2018)Towards a generic and adaptive System-on-Chip controller for space exploration instrumentation., , , , , , и . AHS, стр. 1-8. IEEE, (2015)Custom Reconfigurable Architecture for Autonomous Fault-Recovery of MEMS Vibratory Sensor Electronics., , , и . VLSI Design, стр. 725-728. IEEE Computer Society, (2006)