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基于分布式平台的低压电网负荷监测模型研究 被引量:4
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作者 姜雪娇 陈育培 《自动化仪表》 CAS 2023年第4期48-54,共7页
由于城市用电规模逐渐加大,要求有能适应现代城市需求的电网监测方法对电网进行全天候的安全监测。采用了电压结合频率的电路控制技术,以此为基础建立了低压逆变器模型,对电网模型的年负荷数值进行了预测。对比了改进前后2种控制策略下... 由于城市用电规模逐渐加大,要求有能适应现代城市需求的电网监测方法对电网进行全天候的安全监测。采用了电压结合频率的电路控制技术,以此为基础建立了低压逆变器模型,对电网模型的年负荷数值进行了预测。对比了改进前后2种控制策略下微电源电压稳定性,得到了基于改进后压力流量-电压频率(PQ-Vf)控制策略和采用电网逆变器建立的低压微电网模型。分析了负荷频率和电压幅值,得出该模型具有频率负荷震荡幅度小、电源电压稳定的特点。分布式平台建立的低压电网负荷监测模型适用性强。建立的低压电网监测系统为各类用电系统的安全管理提供了理论支撑,为电力企业的性能测试提供借鉴。 展开更多
关键词 城市用电 电网监测 分布式计算平台 低压微电网 负荷监测 低压逆变 电压频率控制 压力流量-电压频率控制策略
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防火联动控制系统中的智能节点控制器
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作者 戚淑芬 邱学 《青岛科技大学学报(自然科学版)》 CAS 2006年第3期254-256,共3页
根据国家近期颁布的防火安全行业标准,对传统的常规防火控制器进行了改进和创新,增加了多种故障诊断和多任务实时处理功能,解决了低压逆变大功率驱动技术难点,以满足社会的需要。
关键词 防火控制器 智能节点 故障诊断 多任务实时处理 低压逆变
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A Method for the Determination of Turbulence Intensity by Means of a Fast Response Pressure Probe and its Application in a LP Turbine 被引量:3
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作者 Davide Lengani Berardo Paradiso Andreas Marn 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第1期21-31,共11页
This paper describes the measurements and the post-processing procedure adopted for the determination of the turbulence intensity in a low pressure turbine (LPT) by means of a single sensor fast response aerodynamic p... This paper describes the measurements and the post-processing procedure adopted for the determination of the turbulence intensity in a low pressure turbine (LPT) by means of a single sensor fast response aerodynamic pressure probe. The rig was designed in cooperation with MTU Aero Engines and considerable efforts were put into the adjustment of all relevant model parameters. Blade count ratio, airfoil aspect ratio, reduced massflow, reduced speed, inlet turbulence intensity and Reynolds numbers were chosen to reproduce the full scale LP turbine. Measurements were performed adopting a phase-locked acquisition technique in order to provide the time resolved flow field downstream of the turbine rotor. The total pressure random fluctuations are obtained by selectively filtering, in the frequency domain, the deterministic unsteadiness due to the rotor blades and coherent structures. The turbulence intensity is derived from the inverse Fourier transform and the correlations between total pressure and velocity fluctuations. The determination of the turbulence intensity allows the discussion of the interaction processes between the stator and rotor for engine-representative operating conditions of the turbine. 展开更多
关键词 TURBULENCE fast response aerodynamic pressure probe low pressure turbine.
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