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Innovative strategies for protecting power semiconductor switches for phase balancing and feeder balancing in aircraft

机译:保护飞机功率半导体开关以实现相平衡和馈线平衡的创新策略

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An inflexible point-to-point supply of loads is the state-of-the-art technology in aircraft nowadays. Because the wiring is rigid, it is not possible to connect loads to different power feeders when the aircraft is in flight. New technologies are required for handling the increasing demand for electricity on board aircraft. Two concepts — phase balancing and feeder balancing — which lead to an energy-efficient power supply network, are introduced. Both methods use intelligent switching nodes with power semiconductor devices, such as MOSFETs. The power transistors are chosen in such a way that they are slightly above the limits for forward current, blocking voltage and switching frequency. The number of switching operations that produce overvoltages and overcurrents in the electrical grid increases if the concepts that have been presented are used. To ensure that the transistors operate in their safe operating area, snubber circuits are used. Since the switching nodes bring in additional weight, these snubbers have to be designed in such a way that they are sufficiently light. Based on an analytical examination of switching ohmic-inductive and ohmic-capacitive loads, different switching strategies for reducing the negative switching effects have been introduced. Computer simulation results have been presented and evaluated.
机译:灵活的点对点负载供应是当今飞机上的最新技术。由于接线是刚性的,因此在飞机飞行中无法将负载连接到不同的馈线。需要新技术来应对飞机上不断增长的电力需求。引入了两个概念-相平衡和馈线平衡-导致了节能的电源网络。两种方法都将智能开关节点与功率半导体器件(例如MOSFET)一起使用。选择功率晶体管的方式应使其略高于正向电流,阻断电压和开关频率的限制。如果使用已经提出的概念,则在电网中产生过电压和过电流的开关操作的数量会增加。为了确保晶体管在其安全的工作区域中工作,使用了缓冲电路。由于开关节点带来了额外的重量,因此这些缓冲器必须以足够轻的方式进行设计。在对开关电感性负载和电阻性负载进行分析检查的基础上,已引入了各种用于减小负开关效应的开关策略。计算机仿真结果已经提出并评估。

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