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基于连通二部图的二阶多智能体系统分组一致性分析 被引量:8
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作者 林瑜阳 李钟慎 《信息与控制》 CSCD 北大核心 2017年第1期7-12,共6页
在连通二部图拓扑结构下,针对二阶连续时间系统,研究了多智能体的分组一致问题.根据连通二部图的特性,设计了基于竞争的二阶多智能体系统分组一致控制协议;利用代数图论和矩阵论,分析并得到了二阶多智能体系统实现分组一致的充分条件,... 在连通二部图拓扑结构下,针对二阶连续时间系统,研究了多智能体的分组一致问题.根据连通二部图的特性,设计了基于竞争的二阶多智能体系统分组一致控制协议;利用代数图论和矩阵论,分析并得到了二阶多智能体系统实现分组一致的充分条件,同时得到两个分组的一致平衡点.仿真结果表明,连通二部图下的二阶多智能体系统可实现分组一致. 展开更多
关键词 多智能体系统 连通二部图 分组一致性 平衡点
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离散多智能体系统分组一致性分析 被引量:2
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作者 林瑜阳 李钟慎 《华侨大学学报(自然科学版)》 北大核心 2017年第3期306-311,共6页
在有向拓扑结构下,研究离散多智能体系统的分组一致问题,提出无入度平衡假设条件的控制协议设计方法.首先,根据系统模型,设计离散多智能体系统的分组一致控制协议.其次,利用代数图论和矩阵论,分析并得到离散多智能体系统实现分组一致的... 在有向拓扑结构下,研究离散多智能体系统的分组一致问题,提出无入度平衡假设条件的控制协议设计方法.首先,根据系统模型,设计离散多智能体系统的分组一致控制协议.其次,利用代数图论和矩阵论,分析并得到离散多智能体系统实现分组一致的充要条件.最后,仿真结果验证了理论分析结论的正确性.数值仿真结果表明:系统实现分组一致仅要求有向图G_n含有一个有向生成树,不要求拓扑结构满足入度平衡条件. 展开更多
关键词 多智能体系统 离散时间系统 入度平衡 分组一致性
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Comparative Analysis of Two Energy-Efficient Technologies Used in the Shanghai Tower
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作者 Sarah Chen yuyang li 《Energy and Power Engineering》 2022年第1期1-12,共12页
Climate change continues to affect the lives of individuals across the world, creating a rise in demand for new technologies that can slow down the impacts of climate change. Shanghai, one of the largest cities in the... Climate change continues to affect the lives of individuals across the world, creating a rise in demand for new technologies that can slow down the impacts of climate change. Shanghai, one of the largest cities in the world, has one of the highest carbon emission levels. In recent years, the research and development of energy-efficient technologies have gained more and more attention. The Shanghai Tower is a pioneer in green building design and a prominent example of Shanghai’s efforts towards low-carbon city development. In this paper, two technologies within the Shanghai Tower<span style="font-family:Verdana;">—</span><span style="font-family:Verdana;">ground source heat pumps (GSHP) and double skin facades (DSF)</span><span style="font-family:Verdana;">—</span><span style="font-family:Verdana;">will be analyzed. The paper will consist of firstly an investigation of the principles of the technologies, and then analysis, evaluation, and comparison of their respective characteristics. While both GSHP and DSF are used for sustainable purposes, the effectiveness of technologies depends on what environment the technology is used in and what purpose they serve. The evaluation of GSHP and DSF will be based on their performances under Shanghai’s climate and whether they contribute to the purposes of the Shanghai Tower.</span> 展开更多
关键词 Shanghai Tower Green Buildings Ground Source Heat Pump Double Skin Facade Energy Efficiency
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