A dispersive delay structure (DDS) is a device that creates a specified group delay function over frequency bandwidth. In this paper, the idea of trapping the electromagnetic waves in a feedback loop is proposed to achieve higher group delay swing. The proposed structure includes two transmission lines and two junctions that act as power divider/combiner. The transmission lines can be either dispersive or non-dispersive. The group delay in the proposed configuration is proportional to the injected power into the feedback loop. So, an increase in the group delay swing can be done by improving the junctions or by adding more feedback loops to the structure. Based on this configuration, a novel DDS, using the substrate integrated waveguide (SIW) transmission line, is introduced. According to the experimental results, the proposed device with a relatively compact size creates high group delay swings (9 ns), and its insertion loss is about 7 dB.
翻译:分散延迟结构(DDS) 是一个在频带宽度上创建特定群体延迟功能的设备。 在本文中, 将电磁波困在反馈环中的想法被提出, 以便实现更大的群体延迟周期。 拟议的结构包括两个传输线和两个连接点, 用作电源分解器/ 组合器。 传输线可以是分散的, 也可以是非分散的。 拟议配置的组合延迟与反馈环中注入的能量成正比。 因此, 可以通过改善连接点或向结构增加更多的反馈环来增加集团延迟周期。 基于此配置, 引入了一个新型的DDS, 使用子节流集波导( SIW) 传输线。 根据实验结果, 相对紧凑的传输线将产生高群体延迟周期( 9 ns), 插入损失约为 7 dB 。