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Currently, there is significant attention being paid to the development of high-speed machines including motors and generators. In particular, permanent magnet machines are gaining more traction due to their outstanding efficiency, high power density, small size, low weight, simple mechanical construction, easy maintenance and good reliability. The higher the motor speed, the smaller the electric...
With advantages of low emissions, fuel flexibility, high efficiency and energy saving, micro turbines (MTs) are one of the most important technologies for distributed generated systems (DGSs) [1,2]. With many advantages such as high power density, simple structure, and higher efficiency, high speed permanent magnetic generator systems (HSPGSs) attract more attentions from the world wide researchers...
As one of the most important kinds of distributed generation systems, the micro turbine generation system can be flexibly installed near the end user, and becomes an important trend of development in DGS gradually. The high speed permanent magnetic generator (HSPMG) can be properly applied in a micro turbine generation system and benefits the system from high efficiency, high power density, simple...
Deuterium-Tritium (D-T) neutron generators have seen increasing use as high energy neutron sources tor active, nondestructive assay in arms control, treaty verification, and nuclear and homeland security applications. The D-T reaction produces a 3.5 MeV alpha and a 14.1 MeV neutron that travel in opposite directions, which facilitates transmission and stimulated fission tomography to reconstruct images...
This paper presents a distributed fault detection and isolation scheme for multimachine power systems. Each generator is interconnected with other machines through a transmission network, where the interactions between directly interconnected machines are nonlinear. In the distributed FDI scheme, a local FDI component is designed for each generator excitation system in the overall system based on...
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