Avalanche transistor is a ideal device which can provide quick response and high peak power simultaneously, and this device is cheap. A pulse generator based on avalanche transistor is designed in this paper; this generator can generate transient current pulse. This generator can be easily triggered, what is more, the performance of this generator is stable and it has a well-behaved load capacity. Therefore, this generator is suitable for using as the magneto-optical switch in the all-optical communication network. Future work will focus on further shorten the duration and rising time of the pulse.
The standby power quick switching device can solve the continuous safe operation of auxiliary power problems. The paper firstly analyzes the basic principle of the quick switching device, and then discusses the possible impact of the quick switching device on the auxiliary power system, and summarizes the influences of different switching ways to the system. At last it concludes that to effectively improve the influences of the quick switching device to the system, we should increase the switching speed of the devices as possible to work in quick-switching mode, so that has certain significance to people of the actual power grid operation.
High-voltage power switching process will produce over-voltage and impulse current, it will bring a range of complex power system problems and when cutting and closing the high voltage the asynchronous motor will also produce over-voltage and impulse current. They have some impacts on the high voltage asynchronous motor, may result in equipment damage. So how to control the production of the impulse current and reduce the size of the impulse current are the core issue of the switching device. This paper highlighted the impact of over-voltage and current effects on the asynchronous motor, finally, this paper refer to the harm of the impulse disturbance and provide some methods of reducing the impulse current, so that has certain significance to people of the actual power grid operation.
many factors need to be considered in layout and distribution of wireless sensor nodes; in addition to the general features of common monitoring sensors, such as economic factors, environmental factors, detection accuracy factor, etc, some particular features should be fully considered, such as intensity, large-scale rapid layout, early warning and monitoring of critical structural components and important areas, as well as its redundancy. Basing on the Modal Energy Method, the paper proposes an optimal sensor layout algorithm available in improvement of modal strain energy method, and such the method is simple and quick, with certain practical value.
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