实现基于认知无线电的智能电网的频谱传感控制

Wei-Lun Hsiao, Wei-Yu Chiu
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引用次数: 5

摘要

提出了一种基于认知无线电的智能电网频谱感知控制的多目标方法。为电力供应商和住宅用户服务的聚合器有两个目标:最大限度地提高电力供应商和用户的综合效益,最大限度地降低认知无线电系统的成本。通过增加对可用频谱的感知时间,可以提高通信质量。准确的信息交换进一步提升了网格参与者的整体效益;然而,更长的感知时间意味着更高的通信成本,这意味着聚合器的利润更少。这两个目标是相互冲突的,导致了多目标优化问题(MOP)。通过解决这个问题,可以构建一个新的需求响应管理(DRM)系统。MO框架激励了电力供应商之间的竞争;因此,住宅用户可以概率地选择电力供应商。对于聚合器而言,在保证通信服务质量的同时,可以获得合理的认知无线电系统成本。仿真结果表明,该方法具有稳定的DRM系统。与结合多个目标的单目标公式相比,MO公式提供了一个关于最优性的广阔视角,因此目标的冲突特征可以很容易地可视化。基于得到的Pareto前,可以进一步确定合理的感知时间值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectrum sensing control for enabling cognitive radio based smart grid
This paper proposes a multiobjective (MO) approach for spectrum sensing control in a cognitive radio-based smart grid. An aggregator that serves power suppliers and residential users has two objectives: maximizing the aggregated benefit of power suppliers and users and minimizing the cost of the cognitive radio system. By increasing the sensing time for the available spectrum, the communication quality can be improved. Accurate information exchange further boosts the overall benefit of grid participants; however, larger sensing time yields higher communication cost, implying less profit for the aggregator. The above two objectives are conflicting, leading to a multiobjective optimization problem (MOP). By solving the MOP, a novel demand response management (DRM) system can be constructed. The MO framework motivates competition among power suppliers; hence, residential users can choose power suppliers probabilistically. For the aggregator, a reasonable cost of the cognitive radio system can be attained while communication quality of service is guaranteed. Simulations show that the proposed MO approach yields a stable DRM system. In contrast with a single-objective formulation, which combines multiple objectives, the MO formulation offers a broad perspective on optimality so that the conflicting features of the objectives can be readily visualized. A reasonable value of the sensing time can be further determined based on the obtained Pareto front.
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