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Strictly nonblocking directional-coupler-based switching networks under crosstalk constraint

机译:串扰约束下严格无阻塞的基于定向耦合器的交换网络

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Directional-coupler (DC)-based switching systems can switch signals at the rate of several terabits per second. Such switches can also transmit signals with multiple wavelengths simultaneously. Despite these advantages, DCs suffer from an intrinsic crosstalk problem that must be overcome in building a robust switching system. In this paper, the principles of constructing strictly nonblocking DC-based photonic switching systems under various crosstalk constraints are explored. We demonstrate how crosstalk adds a new dimension to the theory of switching systems. We find the sufficient nonblocking condition for photonic networks under crosstalk constraints and demonstrate that some well-known nonblocking networks can tolerate a stricter crosstalk constraint while retaining their hardware complexity. The theory developed in the paper can guide us in making the design tradeoff between the level of crosstalk and the amount of hardware.
机译:基于定向耦合器(DC)的交换系统可以每秒几兆比特的速率交换信号。这样的开关还可以同时发送具有多个波长的信号。尽管具有这些优点,DC仍存在固有的串扰问题,在构建鲁棒的开关系统时必须克服这些问题。本文探讨了在各种串扰约束下构造严格无阻塞的基于DC的光子交换系统的原理。我们演示了串扰如何为交换系统理论增加新的维度。我们找到了在串扰约束下光子网络足够的无阻塞条件,并证明了一些众所周知的无阻塞网络在保留其硬件复杂性的同时可以承受更严格的串扰约束。本文开发的理论可以指导我们在串扰水平和硬件数量之间进行设计折衷。

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