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A novel free space communication system using nonlinear InGaAsP microsystem resonators for enabling power-control toward smart cities

机译:一种新颖的自由空间通信系统,采用非线性IngaASP微系统谐振器,用于使智能城市能力控制

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Nowadays, the smart grid has demonstrated a great ability to make life easier and more comfortable given recent advances. This paper studies the above issue from the perspective of two important and very useful smart grid applications, i.e., the advanced metering infrastructure and demand response using the instrumentality of a set of well-known scheduling algorithms, e.g., best-channel quality indicator, log rule, round robin, and exponential-proportional fairness to validate the performance. To increase the data transmission bandwidth, a new concept of optical wireless communication known as free-space optical communication (FSO) system based on microring resonator (MRR) with the ability to deliver up to gigabit (line of sight) transmission per second is proposed for the two studied smart grid applications. The range between 374.7 and 374.79 THz frequency band was chosen for the generation of 10 successive-carriers with a free spectral range of 8.87 GHz. The ten multi-carriers were produced through drop port of the MRR. The results show up to 10 times bandwidth improvement over the radius as large as 600 m and maintain receive power higher than the minimum threshold (- 20 dBm) at the controller/users, so the overall system is still able to detect the FSO signal and extract the original data without detection.
机译:如今,智能电网已经证明了近期提升更容易,更舒适的能力。本文从两个重要且非常有用的智能电网应用程序的角度研究了上述问题,即使用一组众所周知的调度算法的仪器,例如最佳通道质量指示器,日志的先进计量基础设施和需求响应。规则,循环和指数比例公平,以验证性能。为了增加数据传输带宽,提出了一种基于微耦合谐振器(MRR)的自由空间光通信(FSO)系统的光无线通信的新概念,提出了每秒传递到千兆位的千兆位(视线)传输的能力对于两个学习的智能电网应用程序。选择了374.7和374.79 ZZ频带的范围,用于产生10个连续载波,其自由谱范围为8.87GHz。通过MRR的滴港制作十个多载波。结果显示,大约600米的半径上最多10倍的带宽改善,并维持比控制器/用户的最小阈值( - 20 dBm)高的接收功率,因此整个系统仍然能够检测FSO信号和提取原始数据而不检测。

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