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Design space exploration of neural network accelerator based on transfer learning
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作者 吴豫章 ZHI Tian +1 位作者 SONG Xinkai LI Xi 《High Technology Letters》 EI CAS 2023年第4期416-426,共11页
With the increasing demand of computational power in artificial intelligence(AI)algorithms,dedicated accelerators have become a necessity.However,the complexity of hardware architectures,vast design search space,and c... With the increasing demand of computational power in artificial intelligence(AI)algorithms,dedicated accelerators have become a necessity.However,the complexity of hardware architectures,vast design search space,and complex tasks of accelerators have posed significant challenges.Tra-ditional search methods can become prohibitively slow if the search space continues to be expanded.A design space exploration(DSE)method is proposed based on transfer learning,which reduces the time for repeated training and uses multi-task models for different tasks on the same processor.The proposed method accurately predicts the latency and energy consumption associated with neural net-work accelerator design parameters,enabling faster identification of optimal outcomes compared with traditional methods.And compared with other DSE methods by using multilayer perceptron(MLP),the required training time is shorter.Comparative experiments with other methods demonstrate that the proposed method improves the efficiency of DSE without compromising the accuracy of the re-sults. 展开更多
关键词 design space exploration(DSE) transfer learning neural network accelerator multi-task learning
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基于ANSYS Workbench集成CFturbo参数化设计离心泵
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作者 李龙辉 张翔 +4 位作者 傅剑辉 余合丰 张益德 王海云 吕霄 《水泵技术》 2023年第3期11-15,共5页
为了提高离心泵的性能预测,降低离心泵产品的研发成本,提出一种基于ANSYS Workbench平台集成CFturbo参数化设计离心泵的设计方法,该方法联合CFturbo的参数化设计并集成于ANSYS Workbench平台,运用CFX进行数值仿真计算,再进行Design Expl... 为了提高离心泵的性能预测,降低离心泵产品的研发成本,提出一种基于ANSYS Workbench平台集成CFturbo参数化设计离心泵的设计方法,该方法联合CFturbo的参数化设计并集成于ANSYS Workbench平台,运用CFX进行数值仿真计算,再进行Design Exploration响应面优化设计,能够快速设计并优化离心泵叶轮外参数值,形成闭环设计,使设计研发得到快速解决,同时可以有效提升离心泵的水力设计达到节能增效的设计目的。 展开更多
关键词 ANSYS Workbench CFturbo CFX design Exploration 参数化设计
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Exploring the synergy of building massing and façade design through evolutionary optimization 被引量:1
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作者 Likai Wang Han Zhang +1 位作者 Xuehan Liu Guohua Ji 《Frontiers of Architectural Research》 CSCD 2022年第4期761-780,共20页
In performance-based architectural design optimization, the design of building massings and façades is commonly separated, which weakens the effectiveness in performance improvement. In response, this study propo... In performance-based architectural design optimization, the design of building massings and façades is commonly separated, which weakens the effectiveness in performance improvement. In response, this study proposes a hybrid massing-façade integrated design generation and optimization workflow to integrate the two elements in an evolutionary design process. Compared with the existing approaches, the proposed workflow emphasizes the diversity of building design generation, with which various combinations of building massing forms and façade patterns can be systematically explored. Two case studies and a corresponding comparison study are presented to demonstrate the efficacy of the proposed workflow. Results show that the optimization can produce designs coupling the potential of building massings and façades in performance improvement. In addition, the optimization can provide information that supports early-stage architectural design exploration. Such information also enables the architect to understand the performance implications associated with the synergy of building massing and façade design. 展开更多
关键词 Performance-based design Building massing Façade DAYLIGHTING Solar irradiation Discomfort glare design exploration Early design stage design optimization EvoMass
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CADSE: communication aware design space exploration for efficient run-time MPSoC management
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作者 Amit Kumar SINGH Akash KUMAR +1 位作者 Jigang WU Thambipillai SRIKANTHAN 《Frontiers of Computer Science》 SCIE EI CSCD 2013年第3期416-430,共15页
Real-time multi-media applications are increasingly mapped on modern embedded systems based on multiprocessor systems-on-chip (MPSoC). Tasks of the applications need to be mapped on the MPSoC resources efficiently i... Real-time multi-media applications are increasingly mapped on modern embedded systems based on multiprocessor systems-on-chip (MPSoC). Tasks of the applications need to be mapped on the MPSoC resources efficiently in order to satisity their performance constraints. Exploring all the possible mappings, i.e., tasks to resources combinations exhaustively may take days or weeks. Additionally, the exploration is performed at design-time, which cannot handle dynamism in applications and resources' status. A runtime mapping technique can cater for the dynamism but cannot guarantee for strict timing deadlines due to large computations involved at run-time. Thus, an approach performing feasible compute intensive exploration at design-time and using the explored results at run-time is required. This paper presents a solution in the same direction. Communicationaware design space exploration (CADSE) techniques have been proposed to explore different mapping options to be selected at run-time subject to desired performance and available MPSoC resources. Experiments show that the proposed techniques for exploration are faster over an exhaustive exploration and provides almost the same quality of results. 展开更多
关键词 multiprocessor systems-on-chip design space exploration run-time mapping synchronous dataflow graphs THROUGHPUT
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