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A Mixed Integer Programming Model for Optimum Placement of Base Stations and Optical Network Units in a Hybrid Wireless-Optical Broadband Access Network (WOBAN)

机译:混合整数编程模型,用于混合无线光学宽带接入网络中基站和光网络单元的最佳放置(WOONAN)

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The concept of a hybrid wireless-optical broadband access network (referred to as WOBAN here) is a very attractive one. This is because it may be costly in several situations to run fiber to every home from the telecom central office (CO); also, providing wireless access from the CO to every end user may not be possible because of limited spectrum. Thus, running fiber as far as possible from the CO towards the end user and then having wireless access technologies take over may be an excellent compromise. How far should fiber penetrate before wireless takes over is an interesting engineering design and optimization problem, which our study is focussing on. We propose and investigate the characteristics of a "mixed integer programming (MIP)" model for optimum placements of base stations (BS) and optical network units (ONU) in a WOBAN (primal problem). We develop several constraints to be satisfied: BS and ONU installation, user and channel assignment, and signal-quality and interference constraints. To solve this MIP with reasonable accuracy, we use "Lagrangean relaxation" to obtain the corresponding "Lagrangean dual" problem. Via simulation experiments, we verify how sensitive is the placement problem with respect to a set of chosen metrics.
机译:混合无线光学宽带接入网络的概念(在这里称为WOON)是一个非常有吸引力的概念。这是因为在来自电信中央局(CO)的每个家庭中运行光纤的几种情况可能是昂贵的;而且,由于有限的频谱,可以不可能从CO到每个最终用户提供无线访问。因此,尽可能地从CO向最终用户开始运行光纤,然后具有无线接入技术可能是出色的折衷。纤维在无线接管前渗透到有趣的工程设计和优化问题,我们的研究侧重于我们的研究。我们提出并研究了WOBAN(原始问题)中基站(BS)和光网络单元(ONU)的最佳放置的“混合整数编程(MIP)”模型的特征。我们开发若干约束要满足:BS和ONU安装,用户和频道分配,以及信号质量和干扰约束。要以合理的准确性解决此摩托,我们使用“拉格朗形松弛”获得相应的“拉格朗日双”问题。通过仿真实验,我们核实了对一组所选择的指标的放置问题有多敏感。

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