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智能变电站和调控主站的模型按需共享技术 被引量:10
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作者 丁宏恩 赵家庆 +3 位作者 苏大威 杨志宏 宋鑫 肖翔 《电力系统自动化》 EI CSCD 北大核心 2012年第22期73-77,共5页
基于IEC 61850与IEC 61970提出电网模型由主站集中建模变为分布式按需裁剪引用变电站模型的策略,解决了智能变电站与各级调控主站之间以及各级调控主站之间的电网模型、变电站接线图、量测信息的按需共享问题。成果已成功应用于苏州500k... 基于IEC 61850与IEC 61970提出电网模型由主站集中建模变为分布式按需裁剪引用变电站模型的策略,解决了智能变电站与各级调控主站之间以及各级调控主站之间的电网模型、变电站接线图、量测信息的按需共享问题。成果已成功应用于苏州500kV常熟智能变电站、智能电网调度技术支持系统等试点工程。 展开更多
关键词 智能变.电站 智能电网 调度技术支持系统 模型共享 模型裁剪 图形裁剪 图元映射
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地缘环境分析模型图形化建模 被引量:8
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作者 冯长强 江南 +2 位作者 张晓楠 丁昊 武丽丽 《测绘科学技术学报》 CSCD 北大核心 2017年第1期91-95,共5页
针对日益增加的地缘环境分析模型(GEAM)组织管理需求,在对当前GEAM进行元模型剖分及分类的基础上,重点对GEAM图形化建模进行研究。将图形化建模任务划分为模型组织管理、模型编辑及模型验证与运行3个模块,界定各模块的主要功能,构建GEA... 针对日益增加的地缘环境分析模型(GEAM)组织管理需求,在对当前GEAM进行元模型剖分及分类的基础上,重点对GEAM图形化建模进行研究。将图形化建模任务划分为模型组织管理、模型编辑及模型验证与运行3个模块,界定各模块的主要功能,构建GEAM图形化建模框架。利用面向对象思想对图元语义映射与关联、模型验证与运行、模型输出与加载等关键技术进行深入研究与剖析。开发GEAM图形化建模原型系统,并通过对地缘环境单元划分模型进行图形化组建,验证可行性。 展开更多
关键词 地缘环境分析 图形化建模 模型剖分 图元语义映射与关联 模型输出与加载
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On brain activity mapping: Insights and lessons from Brain Decoding Project to map memory patterns in the hippocampus 被引量:1
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作者 TSIEN Joe Z. LI Meng +9 位作者 OSAN Remus CHEN GuiFen LIN LongNian WANG Phillip Lei FREY Sabine FREY Julietta ZHU DaJiang LIU TianMing ZHAO Fang KUANG Hui 《Science China(Life Sciences)》 SCIE CAS 2013年第9期767-779,共13页
The BRAIN project recently announced by the president Obama is the reflection of unrelenting human quest for cracking the brain code, the patterns of neuronal activity that define who we are and what we are. While the... The BRAIN project recently announced by the president Obama is the reflection of unrelenting human quest for cracking the brain code, the patterns of neuronal activity that define who we are and what we are. While the Brain Activity Mapping proposal has rightly emphasized on the need to develop new technologies for measuring every spike from every neuron, it might be helpful to consider both the theoretical and experimental aspects that would accelerate our search for the organizing principles of the brain code. Here we share several insights and lessons from the similar proposal, namely, Brain Decoding Project that we initiated since 2007. We provide a specific example in our initial mapping of real-time memory traces from one part of the memory circuit, namely, the CA1 region of the mouse hippocampus. We show how innovative behavioral tasks and appropriate mathematical analyses of large datasets can play equally, if not more, important roles in uncovering the specific-to-general feature-coding cell assembly mechanism by which episodic memory, semantic knowledge, and imagination are generated and organized. Our own experiences suggest that the bottleneck of the Brain Project is not only at merely developing additional new technologies, but also the lack of efficient avenues to disseminate cutting edge platforms and decoding expertise to neuroscience community. Therefore, we propose that in order to harness unique insights and extensive knowledge from various investigators working in diverse neuroscience subfields, ranging from perception and emotion to memory and social behaviors, the BRAIN project should create a set of International and National Brain Decoding Centers at which cutting-edge recording technologies and expertise on analyzing large datasets analyses can be made readily available to the entire community of neuroscientists who can apply and schedule to perform cutting-edge research. 展开更多
关键词 BRAIN project Brain Decoding Project brain activity map learning and memory episodic memory semantic knowledge IMAGINATION concepts fear conditioning earthquake experiences neural code
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