By Vo Hoang Duy, Tran Trong Dao, Sang Bong Kim, Nguyen Tan Tien, Ivan Zelinka
This ebook gathers the complaints of the foreign convention on complicated Engineering – idea and purposes (AETA 2016), held in Busan, Korea, from December eight to ten, 2016. It offers a range of state of the art contributions from interrelated fields like electric engineering, keep an eye on engineering, strength electronics and distribution, telecommunication units, and so on. the most themes lined are: strength (energy-saving energy electronics, electric machines and force structures, green-energy IT, nontrivial dynamics of digital devices), keep an eye on Engineering (robotics, computerized keep watch over, bio-sensor IT), and communique and safeguard (broadcasting IT, communications, cyber security).
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Extra resources for AETA 2016: Recent Advances in Electrical Engineering and Related Sciences: Theory and Application
Zeros of sampled system. : Sliding mode of a discrete system. Syst. Control Lett. : VSS-type self-tuning control. IEEE Trans. Ind. Electron. : Discrete-time variable structure control. -X. ) Variable Structure Systems: Towards the 21st Century. Springer Lecture Note in Control and Information Sciences, vol. 274, pp. 57–81. : Pole assignment in a specified disk. IEEE Trans. Autom. : Sliding sector for VS controller. : Stability of self-tuning control based on lyapunov function. Int. J. Adapt. Control Signal Process.
There is great agreement between the simulated proﬁle and experimental proﬁle. However, they are a difference from CAD proﬁle. The inaccuracy of the proﬁles occurred at wall region and the bottom of product. 66 mm. 63 mm. This difference can be due to only cone pie used in this simulation, and it is constrained with the unsatisﬁed boundary conditions as above assuming. The bottom edge of FEM proﬁle is very flat which is different with observation in actual experiment. It can to be caused by insufﬁciency of boundary conditions as assuming a partial model for FEM simulation.
With the development of computational methods, the numerical analysis of the flow pattern through valves have became more feasible thus leading to many researches into the operation and design of valves. Vu et al.  studied the complex three-dimensional flow ﬁeld of an oxygen safety pressure relieve valve during an incident, with a CFD analysis. The CFD result indicated vortices formation near the opening of the valve which matched the erosion pattern of the damaged hardware. Francis et al. [2, 3] researched incompressible flow structure within pressure relief valve and veriﬁed the critical backpressure ratio at compressible flow.
AETA 2016: Recent Advances in Electrical Engineering and Related Sciences: Theory and Application by Vo Hoang Duy, Tran Trong Dao, Sang Bong Kim, Nguyen Tan Tien, Ivan Zelinka