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The integral equation method of simulating electrical solitons forresearch into reliable hard-wired long distance digital communicationswith picosecond transitions

机译:模拟电孤子的积分方程方法,用于皮秒级跃迁的可靠硬接线长距离数字通信

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摘要

An integral equation relates electric charge and magnetic flux in a delay line with nonlinear and frequency-dependent elements. Iteration can approximate a transmission line that is continuously loaded with ferrite beads, revealing subnanosecond solitons, that is, pulses that resist the effects of dispersion. Electrical solitons are a new phenomenon for picosecond communications where the goal is speed, reliability, and hard-wired security
机译:积分方程将延迟线中的电荷和磁通量与非线性和频率相关的元素联系起来。迭代可以近似于连续加载铁氧体磁珠的传输线,从而揭示出亚纳秒孤子,即抵抗色散影响的脉冲。电孤子是皮秒通信的一种新现象,其目标是速度,可靠性和硬连线安全性

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