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项目管理中的协调系统分析 被引量:1
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作者 赛云秀 《项目管理技术》 2013年第3期28-32,共5页
项目处在一定的冲突环境中,协调是解决冲突的基本手段。分析了项目协调的理论基础和研究现状,构建了项目协调系统模型,探索了协调系统的具体应用。认为协调的关键是明确协调技术,并应从文化、管理、技术、行为四个维度来规范参与者的行... 项目处在一定的冲突环境中,协调是解决冲突的基本手段。分析了项目协调的理论基础和研究现状,构建了项目协调系统模型,探索了协调系统的具体应用。认为协调的关键是明确协调技术,并应从文化、管理、技术、行为四个维度来规范参与者的行为,从而提高项目管理的有效性,充分发挥项目管理的优势。 展开更多
关键词 项目管理 协调系统 协调 协调系统模型
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Min-max fuzzy model predictive tracking control of boiler-turbine system for ultra-supercritical units 被引量:1
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作者 Chen Chen Pan Lei Kwang Y.Lee 《Journal of Southeast University(English Edition)》 EI CAS 2021年第1期42-51,共10页
To improve the control performance of nonlinear ultra-supercritical(USC)thermal power units,an improved min-max fuzzy model predictive tracking control(FMPTC)strategy is proposed.First,a T-S fuzzy model is established... To improve the control performance of nonlinear ultra-supercritical(USC)thermal power units,an improved min-max fuzzy model predictive tracking control(FMPTC)strategy is proposed.First,a T-S fuzzy model is established to approximate the dynamics of the nonlinear boiler-turbine system.Then,based on an extended fuzzy model containing state variables and output variables,a min-max FMPTC is derived for output regulation while ensuring the closed-loop system stability and the inputs in their given constraints.For greater controller design freedom,the developed controller adopts a new state-and output-based objective function.In addition,the observer estimation error is regarded as a bounded disturbance,ensuring the stability of the entire closed-loop control system.Simulation results on a 1000 MW USC boiler-turbine model illustrate the effectiveness of the proposed approach. 展开更多
关键词 ultra-supercritical boiler-turbine system T-S model min-max model predictive control output tracking linear matrix inequality
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IMPACT STUDY ON THE CALCULATION OF VERTICAL VELOCITY IN DIFFERENT VERTICAL COORDINATE SYSTEMS
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作者 李兴良 陈德辉 沈学顺 《Journal of Tropical Meteorology》 SCIE 2005年第2期187-199,共13页
With the development of high-resolution and multi-scale unified numerical model, some of techniques about non-hydrostatic meso-scale numerical weather prediction are addressed. The impact of the vertical coordinate sy... With the development of high-resolution and multi-scale unified numerical model, some of techniques about non-hydrostatic meso-scale numerical weather prediction are addressed. The impact of the vertical coordinate system is one of them. In this paper, based on a WRF (Weather Research and Forecast) model, the impact on the calculation of vertical velocity was studied with different vertical coordinates. The simulation results showed that the calculation of vertical velocity is sensitive to vertical coordinates. It is especially more evident when the resolution increased. Due to the close relationships between vertical velocity and precipitation, the difference of vertical velocity inevitably influences model’s description of precipitation. An ideal experiment exhibits that pressure gradient force computations in the pressure terrain- following coordinate are sensitive to surface pressure. 展开更多
关键词 numerical prediction models coordinate system vertical velocity pressure gradient force
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