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Based on the merits of handy and flexibility for two-wheeled self-balancing vehicles (TWSBV), some of the practicable applications have been enhanced and extended. In this research, we implement an empirical design method by utilizing distinct fuzzy controllers for a TWSBV, which can be implemented by Arduino Leonardo development platform, with performing the standing balance, moving balance and carrying...
At present, due to a multitudes of equipment with intelligence and information have been put into operation in the intelligent substation, the ways of the information interaction are becoming complicated between intelligent devices in the stations. Consequently, the enormous amount of information and complexity of the correlation cause difficulties in data collection, management, analysis and evaluation...
In order to prevent the possible leakage of user's sensitive information, it is necessary to delete them securely before USB flash disks are exposed to an untrusted environment. But it is impossible for ordinary users to change functions in the hardware layer of USB flash disks. In order to perform a userlevel secure deletion for USB flash disks, we analyzed data remnant for both logical layer and...
Solving systems of linear and nonlinear equations is of fundamental importance at the basic level of a vast array of science and engineering applications. As these applications become more computationally complex, the need for low cost, high performance computing methods increases. This paper discusses different approaches to reduce computation time to solve linear equations by using a hardware/software...
This paper presents the performance analysis hardware/software co-design of iterative methods for solving linear systems in terms of speed, iteration and toleration. Three iterative methods, Jacobi, Gauss-Seidel (GS) and conjugate gradient (CG), are implemented using Xilink EDK (embedded development kit). For comparison purposes, the same methods are also implemented in pure software using Xilink...
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