电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2014年
9期
137-142
,共6页
刘咏飞%鞠平%薛禹胜%吴峰%张建勇
劉詠飛%鞠平%薛禹勝%吳峰%張建勇
류영비%국평%설우성%오봉%장건용
电力系统%随机激励%随机微分方程%Heun数值方法%功率谱
電力繫統%隨機激勵%隨機微分方程%Heun數值方法%功率譜
전력계통%수궤격려%수궤미분방정%Heun수치방법%공솔보
power systems%random excitation%stochastic differential equation(SDE)%Heun method%power spectrum
随着可再生能源发电和电动汽车的不断接入,随机激励对电力系统特性的影响日渐突出。为了研究电力系统在随机激励下的响应特性,首先,以可再生能源发电和电动汽车接入电网后所引起的功率波动作为随机激励,假设该激励的形式为高斯型白噪声,并基于单机无穷大系统,构造了带有随机功率激励项的非线性随机微分方程模型。其次,采用 Heun数值方法,分析了仿真计算步长、随机激励强度以及随机激励步长对系统功角响应的影响。最后,根据系统功角响应功率谱特性,从频域的角度分析了功率随机激励下的功角响应特性,获得了相应的结论。
隨著可再生能源髮電和電動汽車的不斷接入,隨機激勵對電力繫統特性的影響日漸突齣。為瞭研究電力繫統在隨機激勵下的響應特性,首先,以可再生能源髮電和電動汽車接入電網後所引起的功率波動作為隨機激勵,假設該激勵的形式為高斯型白譟聲,併基于單機無窮大繫統,構造瞭帶有隨機功率激勵項的非線性隨機微分方程模型。其次,採用 Heun數值方法,分析瞭倣真計算步長、隨機激勵彊度以及隨機激勵步長對繫統功角響應的影響。最後,根據繫統功角響應功率譜特性,從頻域的角度分析瞭功率隨機激勵下的功角響應特性,穫得瞭相應的結論。
수착가재생능원발전화전동기차적불단접입,수궤격려대전력계통특성적영향일점돌출。위료연구전력계통재수궤격려하적향응특성,수선,이가재생능원발전화전동기차접입전망후소인기적공솔파동작위수궤격려,가설해격려적형식위고사형백조성,병기우단궤무궁대계통,구조료대유수궤공솔격려항적비선성수궤미분방정모형。기차,채용 Heun수치방법,분석료방진계산보장、수궤격려강도이급수궤격려보장대계통공각향응적영향。최후,근거계통공각향응공솔보특성,종빈역적각도분석료공솔수궤격려하적공각향응특성,획득료상응적결론。
With the steady integration of renewable generation and electrical vehicles into power systems,the dynamics of the power system under random factors is receiving ever-increasing concern.In order to discuss the dynamic responses of the power system under random excitation,a nonlinear stochastic differential equation (SDE) model for one machine and infinite bus (OMIB) system is built,where the power fluctuation of renewable energy and electrical vehicles are treated as Gaussian white noise.Then the Heun numerical method is applied to the SDE to calculate the dynamics of rotor angle under random disturbance.The calculation step is firstly changed to study the numerical stability of the Heun method.The random excitations with different intensities are also applied to the SDE,and the impact of random excitation on the dynamics of rotor angle is analyzed.The effect of the time interval of random excitation on the rotor angle is also studied.Finally,according to the characteristics of the corresponding power spectrum,some conclusions of the impact of random excitation on the dynamics of the rotor angle are gained.