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On the Optimisation of Practical Wireless Indoor and Outdoor Microcells Subject to QoS Constraints

机译:受QoS约束的实用无线室内外微蜂窝优化研究。

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Wireless indoor and outdoor microcells (WIOMs) have emerged as a promising means to deal with a high demand of mobile users for a variety of services. Over such heterogeneous networks, the deployment of WIOMs costs mobile/telecommunications company high capital expenditures and operating expenses. This paper aims at optimising the WIOMs taking into account various network communication environments. We first develop an optimisation problem to minimise the number of cells as well as determining their optimal locations subject to the constraints of the coverage and quality-of-service (QoS) requirements. In particular, we propose a binary-search based cell positioning (BSCP) algorithm to find the optimal number of cells given a preset candidate antenna positions. The proposed BSCP algorithm is shown to not only reduce the number of cells for saving resources but also requires a low computational complexity compared to the conventional approaches with exhaustive search over all available sites. Moreover, EDX SignalPro is exploited as a simulation platform to verify the effectiveness of the proposed BSCP for the WIOMs with respect to various propagation modes and antenna parameters of different types, including isotropic, multiple-input single-output and multiple-input multiple-output.
机译:无线室内和室外微蜂窝(WIOM)已经成为一种有前途的手段,可以满足移动用户对各种服务的高需求。在这种异构网络上,WIOM的部署使移动/电信公司付出了高昂的资本支出和运营支出。本文旨在考虑各种网络通信环境来优化WIOM。我们首先提出一个优化问题,以最大程度地减少小区数量,并根据覆盖范围和服务质量(QoS)要求的约束确定其最佳位置。特别是,我们提出了一种基于二进制搜索的小区定位(BSCP)算法,以在给定预设候选天线位置的情况下找到最佳小区数量。与在所有可用站点上进行穷举搜索的常规方法相比,所提出的BSCP算法不仅减少了用于节省资源的单元数,而且还要求较低的计算复杂度。此外,EDX SignalPro被用作仿真平台,以针对各种传播模式和不同类型的天线参数(包括各向同性,多输入单输出和多输入多输出)验证针对WIOM提出的BSCP的有效性。 。

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