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Compact optimization algorithms with re-sampled inheritance

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A 0.1-nW–1- μ W Energy-Efficient All-Dynamic Versatile Capacitance-to-Digital Converter

This paper is an extended version of our previous conference paper entitled “A 0.1nW −1µW All-Dynamic Capacitance-to-Digital Converter with Power/Speed/Capacitance Scalability”. In this paper, detailed theoretical and circuit analysis of the proposed ultra-low power versatile capacitive-to-digital converter is provided. Besides, more measurement results have also been provided. To provide application examples, this chip is verified with a microelectromechanical (MEMS) pressure sensor and a MEMS accelerometer. It can measure environmental pressure consuming only 0.8 nW at a speed of 100 S/s, and measure acceleration using 1.4 nW at a speed of 200 S/s.

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Resonating Shell: A Spherical-Omnidirectional Ultrasound Transducer for Underwater Sensor Networks

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Evolutionary Approach to Constructing a Deep Feedforward Neural Network for Prediction of Electronic Coupling Elements in Molecular Materials

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Morphological Evolution for Pipe Inspection Using ROS

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Particle Filter based Tracking of Highly Agile Wireless Agents via Random Input Sampling

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Insights in evolutionary exploration of robot morphology space

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Optimization in the design and fabrication of a PZT piezoelectric micromachined ultrasound transducer (PMUT).

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