PSASP算例模型,标准IEEE39节点系统模型,加新能源风机和光伏,(可配visio原图,发lunwen会用到的)
资源内容介绍
PSASP算例模型,标准IEEE39节点系统模型,加新能源风机和光伏,(可配visio原图,发lunwen会用到的)。 买算例送无节点限制psasp软件7.41 模型可进行潮流计算,最优潮流,短路计算,暂态稳定性分析,小干扰稳定性分析,电压频率稳定分析,电能质量分析等等等等。自己搭建的模型 网上流传的模型参数都不全,无法运算。 <link href="/image.php?url=https://csdnimg.cn/release/download_crawler_static/css/base.min.css" rel="stylesheet"/><link href="/image.php?url=https://csdnimg.cn/release/download_crawler_static/css/fancy.min.css" rel="stylesheet"/><link href="/image.php?url=https://csdnimg.cn/release/download_crawler_static/89738865/raw.css" rel="stylesheet"/><div id="sidebar" style="display: none"><div id="outline"></div></div><div class="pf w0 h0" data-page-no="1" id="pf1"><div class="pc pc1 w0 h0"><img alt="" class="bi x0 y0 w1 h1" src="/image.php?url=https://csdnimg.cn/release/download_crawler_static/89738865/bg1.jpg"/><div class="t m0 x1 h2 y1 ff1 fs0 fc0 sc0 ls0 ws0">标题<span class="ff2">:<span class="ff3">PSASP<span class="_ _0"> </span></span></span>算例模型在电力系统分析中的应用</div><div class="t m0 x1 h2 y2 ff1 fs0 fc0 sc0 ls0 ws0">摘要<span class="ff2">:</span>本文介绍了<span class="_ _1"> </span><span class="ff3">PSASP<span class="_ _0"> </span></span>算例模型在电力系统分析中的应用<span class="ff4">。<span class="ff3">PSASP<span class="_ _0"> </span></span></span>算例模型基于标准<span class="_ _1"> </span><span class="ff3">IEEE39<span class="_ _0"> </span></span>节</div><div class="t m0 x1 h2 y3 ff1 fs0 fc0 sc0 ls0 ws0">点系统模型<span class="ff2">,</span>加入了新能源风机和光伏发电机组<span class="ff2">,</span>具有潮流计算<span class="ff4">、</span>最优潮流<span class="ff4">、</span>短路计算<span class="ff4">、</span>暂态稳定性</div><div class="t m0 x1 h2 y4 ff1 fs0 fc0 sc0 ls0 ws0">分析<span class="ff4">、</span>小干扰稳定性分析<span class="ff4">、</span>电压频率稳定分析<span class="ff4">、</span>电能质量分析等功能<span class="ff4">。</span>与网上流传的模型相比<span class="ff2">,</span>自己</div><div class="t m0 x1 h2 y5 ff1 fs0 fc0 sc0 ls0 ws0">搭建的模型参数更完整<span class="ff2">,</span>可以提供更准确的分析结果<span class="ff4">。</span>同时<span class="ff2">,</span>本文还介绍了<span class="_ _1"> </span><span class="ff3">PSASP<span class="_ _0"> </span></span>软件的购买方式和</div><div class="t m0 x1 h2 y6 ff1 fs0 fc0 sc0 ls0 ws0">价格优惠政策<span class="ff2">,</span>并强调了诚信为做生意的根本<span class="ff4">。</span></div><div class="t m0 x1 h2 y7 ff1 fs0 fc0 sc0 ls0 ws0">关键词<span class="ff2">:<span class="ff3">PSASP<span class="_ _0"> </span></span></span>算例模型<span class="ff4">、</span>电力系统分析<span class="ff4">、</span>潮流计算<span class="ff4">、</span>暂态稳定性分析<span class="ff4">、</span>电能质量分析</div><div class="t m0 x1 h2 y8 ff1 fs0 fc0 sc0 ls0 ws0">一<span class="ff4">、</span>引言</div><div class="t m0 x1 h2 y9 ff1 fs0 fc0 sc0 ls0 ws0">在电力系统分析领域<span class="ff2">,</span>模型的准确性对于结果的可靠性和可行性至关重要<span class="ff4">。</span>本文介绍了一种基于</div><div class="t m0 x1 h2 ya ff3 fs0 fc0 sc0 ls0 ws0">PSASP<span class="_ _0"> </span><span class="ff1">算例模型的电力系统分析方法<span class="ff2">,</span>该方法基于标准<span class="_ _1"> </span></span>IEEE39<span class="_ _0"> </span><span class="ff1">节点系统模型<span class="ff2">,</span>并加入了新能源风机</span></div><div class="t m0 x1 h2 yb ff1 fs0 fc0 sc0 ls0 ws0">和光伏发电机组<span class="ff4">。</span>该模型具有潮流计算<span class="ff4">、</span>最优潮流<span class="ff4">、</span>短路计算<span class="ff4">、</span>暂态稳定性分析<span class="ff4">、</span>小干扰稳定性分析</div><div class="t m0 x1 h2 yc ff4 fs0 fc0 sc0 ls0 ws0">、<span class="ff1">电压频率稳定分析</span>、<span class="ff1">电能质量分析等功能</span>。<span class="ff1">与网上流传的模型相比<span class="ff2">,</span>自己搭建的模型参数更完整<span class="ff2">,</span></span></div><div class="t m0 x1 h2 yd ff1 fs0 fc0 sc0 ls0 ws0">可以提供更准确的分析结果<span class="ff4">。</span></div><div class="t m0 x1 h2 ye ff1 fs0 fc0 sc0 ls0 ws0">二<span class="ff4">、<span class="ff3">PSASP<span class="_ _0"> </span></span></span>算例模型的特点</div><div class="t m0 x1 h2 yf ff3 fs0 fc0 sc0 ls0 ws0">PSASP<span class="_ _0"> </span><span class="ff1">算例模型基于标准<span class="_ _1"> </span></span>IEEE39<span class="_ _0"> </span><span class="ff1">节点系统模型<span class="ff2">,</span>并加入了新能源风机和光伏发电机组<span class="ff4">。</span>该模型的特</span></div><div class="t m0 x1 h2 y10 ff1 fs0 fc0 sc0 ls0 ws0">点如下<span class="ff2">:</span></div><div class="t m0 x1 h2 y11 ff3 fs0 fc0 sc0 ls0 ws0">1.<span class="_ _2"> </span><span class="ff1">潮流计算<span class="ff2">:</span></span>PSASP<span class="_ _0"> </span><span class="ff1">算例模型可以进行电力系统的潮流计算<span class="ff2">,</span>通过该计算可以得到电力系统各节</span></div><div class="t m0 x2 h2 y12 ff1 fs0 fc0 sc0 ls0 ws0">点的电压<span class="ff4">、</span>相角等信息<span class="ff2">,</span>为后续分析提供准确的输入数据<span class="ff4">。</span></div><div class="t m0 x1 h2 y13 ff3 fs0 fc0 sc0 ls0 ws0">2.<span class="_ _2"> </span><span class="ff1">最优潮流<span class="ff2">:</span>在潮流计算的基础上<span class="ff2">,</span></span>PSASP<span class="_ _0"> </span><span class="ff1">算例模型可以进行最优潮流的计算<span class="ff2">,</span>通过寻找节点功</span></div><div class="t m0 x2 h2 y14 ff1 fs0 fc0 sc0 ls0 ws0">率调整的最佳方式<span class="ff2">,</span>实现电力系统的最优运行<span class="ff4">。</span></div><div class="t m0 x1 h2 y15 ff3 fs0 fc0 sc0 ls0 ws0">3.<span class="_ _2"> </span><span class="ff1">短路计算<span class="ff2">:</span></span>PSASP<span class="_ _0"> </span><span class="ff1">算例模型可以进行电力系统的短路计算<span class="ff2">,</span>通过模拟电力系统出现短路故障时</span></div><div class="t m0 x2 h2 y16 ff1 fs0 fc0 sc0 ls0 ws0">的电流流向和大小<span class="ff2">,</span>为故障诊断和保护装置的设计提供依据<span class="ff4">。</span></div><div class="t m0 x1 h2 y17 ff3 fs0 fc0 sc0 ls0 ws0">4.<span class="_ _2"> </span><span class="ff1">暂态稳定性分析<span class="ff2">:</span></span>PSASP<span class="_ _0"> </span><span class="ff1">算例模型可以进行电力系统的暂态稳定性分析<span class="ff2">,</span>通过模拟电力系统在</span></div><div class="t m0 x2 h2 y18 ff1 fs0 fc0 sc0 ls0 ws0">突发负荷变化或故障发生时的稳定性表现<span class="ff2">,</span>为电力系统的运行调度提供参考<span class="ff4">。</span></div><div class="t m0 x1 h2 y19 ff3 fs0 fc0 sc0 ls0 ws0">5.<span class="_ _2"> </span><span class="ff1">小干扰稳定性分析<span class="ff2">:</span></span>PSASP<span class="_ _0"> </span><span class="ff1">算例模型可以进行电力系统的小干扰稳定性分析<span class="ff2">,</span>通过模拟电力系</span></div><div class="t m0 x2 h2 y1a ff1 fs0 fc0 sc0 ls0 ws0">统在小幅度负荷扰动时的稳定性表现<span class="ff2">,</span>为电力系统的调度和控制提供支持<span class="ff4">。</span></div><div class="t m0 x1 h2 y1b ff3 fs0 fc0 sc0 ls0 ws0">6.<span class="_ _2"> </span><span class="ff1">电压频率稳定分析<span class="ff2">:</span></span>PSASP<span class="_ _0"> </span><span class="ff1">算例模型可以进行电力系统的电压频率稳定分析<span class="ff2">,</span>通过模拟电力系</span></div><div class="t m0 x2 h2 y1c ff1 fs0 fc0 sc0 ls0 ws0">统在电压频率异常变化时的稳定性表现<span class="ff2">,</span>为电力系统的调度和控制提供参考<span class="ff4">。</span></div><div class="t m0 x1 h2 y1d ff3 fs0 fc0 sc0 ls0 ws0">7.<span class="_ _2"> </span><span class="ff1">电能质量分析<span class="ff2">:</span></span>PSASP<span class="_ _0"> </span><span class="ff1">算例模型可以进行电力系统的电能质量分析<span class="ff2">,</span>通过模拟电力系统在电能</span></div><div class="t m0 x2 h2 y1e ff1 fs0 fc0 sc0 ls0 ws0">质量异常时的响应和调整<span class="ff2">,</span>为电力系统的运行和管理提供参考<span class="ff4">。</span></div><div class="t m0 x1 h2 y1f ff1 fs0 fc0 sc0 ls0 ws0">三<span class="ff4">、<span class="ff3">PSASP<span class="_ _0"> </span></span></span>算例模型的优势</div><div class="t m0 x1 h2 y20 ff1 fs0 fc0 sc0 ls0 ws0">与网络上流传的模型相比<span class="ff2">,</span>自己搭建的<span class="_ _1"> </span><span class="ff3">PSASP<span class="_ _0"> </span></span>算例模型具有以下优势<span class="ff2">:</span></div></div><div class="pi" data-data='{"ctm":[1.568627,0.000000,0.000000,1.568627,0.000000,0.000000]}'></div></div>