26.4
在涉及具有不同额定值的并联变压器的情况下,开发标幺模型需要考虑非标称匝数比。当所选基准电压与变压器的额定电压不成比例时,就会出现这种情况。考虑一个变压器,其额定电压与项 a 相关。如果所选电压基准满足涉及项 b 的关系,则项 c 定义为这些基准的比率。然后将此比率代入额定电压关系中。
为了解决非标称…
与实际量值模型相比,标幺值模型简化了变压器的分析。理想情况下,当电压基准比值与绕组的电压额定值相匹配时,变压器绕组的影响将被消除。
然而,对于具有不同额定值的并联变压器,选择电压基准具有挑战性。
对于此类情况,需建立具有非额定变比的标幺值模型,其中所选定的基准电压与变压器的额定电压不成比例。
考虑一个变压器,其额定电压由参数 a 关联。
若所选电压基准满足与项 b 的关系,则项 c 为其比值,并代入额定电压关系式中。
该系统可通过两个串联的变压器进行建模:其中一个表示包含损耗的标准标幺值模型,另一个为理想变压器。在此模型中,为简化起见,忽略了并联励磁支路。
该模型可能不适用于无法容纳理想变压器绕组的计算机程序。
另一种方法是采用节点方程,通过导纳参数来表示计算机程序中非标称变比的变压器。
对于实际的 c,可以建立一个π型电路网络模型。
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Q1: Why are per-unit models with off-nominal turns ratios needed for parallel transformers?
Per-unit models with off-nominal turns ratios are necessary when parallel transformers have different voltage ratings and selected base voltages are not proportional to the transformer's voltage ratings. Standard per-unit models assume voltage base ratios match winding voltage ratings, but this assumption fails for transformers with disparate ratings. Off-nominal models accommodate this mismatch, enabling accurate analysis of complex electrical systems with mixed transformer configurations.
Q2: How is an off-nominal turns ratio transformer represented in series modeling?
An off-nominal turns ratio transformer is modeled as two transformers in series: a standard per-unit model representing losses and practical aspects, and an ideal transformer representing the voltage ratio without losses. The ideal transformer component captures the non-standard turns ratio, while the per-unit model accounts for real transformer behavior. Shunt-exciting branches are typically neglected in this simplified representation.
Q3: What is the relationship between voltage bases and off-nominal turns ratios?
The off-nominal turns ratio, term c, is defined as the ratio of selected voltage bases divided by the transformer's rated voltage ratio. When chosen voltage bases satisfy a relationship involving term b and are substituted into the rated voltage relationship (term a), the resulting ratio c represents the deviation from nominal conditions. This ratio quantifies how far the selected bases deviate from the transformer's actual voltage ratings.
Q4: Why might series transformer models be unsuitable for computer programs?
Series transformer models with ideal transformer windings may not be compatible with computer programs that lack support for ideal transformer representations. These programs cannot process the ideal transformer component separately. To overcome this limitation, alternative modeling approaches using nodal equations and admittance parameters provide computer-compatible representations of off-nominal turns ratio transformers.
Q5: How do nodal equations help model off-nominal turns ratio transformers in software?
Nodal equations provide admittance parameters that represent off-nominal turns ratio transformers without requiring ideal transformer windings. This approach is compatible with most simulation software and computational tools. The admittance parameters derived from nodal equations offer a straightforward means of incorporating transformer behavior into computer-based analysis, making complex transformer networks easier to simulate.
Q6: What is a pi circuit network and when is it used for transformers?
A pi circuit network is a practical representation used to model transformers with off-nominal turns ratios when the turns ratio is a real number. The pi network effectively captures impedance characteristics and is compatible with most computational tools. This approach provides accurate representation of transformer behavior and is particularly useful for computer-based analysis of transformers with non-standard voltage bases.
Q7: How do per-unit models simplify transformer analysis compared to actual quantity models?
Per-unit models normalize transformer quantities to base values, eliminating the need to track actual voltage and current magnitudes. This normalization simplifies calculations and comparisons across transformers with different ratings. However, when voltage base ratios do not match winding voltage ratings, off-nominal turns ratios must be incorporated to maintain accuracy in the simplified model.