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某型350MVA短路试验发电机试验系统突然短路的研究 总被引:1,自引:0,他引:1
通过对350MVA短路试验发电机试验系统突然短路时短路电流的分析和计算,导出试验系统短路电流值。给出了本系统交、直流最大短路电流的实用计算方法。为电力系统继电保护提供了理论依据。同时,通过试验验证计算方法的有效性。 相似文献
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针对传统发电机整流系统谐波含量大,功率因数低的特点,为永磁同步发电机设计了一套PWM整流系统,通过电流前馈解耦控制,实现有功无功解耦,实现发电机侧单位功率因数运行。实验结果验证了该控制方案的可行性,可有效减少发电机电流谐波含量,并能在发电频率较大范围变动时仍能保持系统稳定运行。 相似文献
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收费公路是我国公路在新的建设环境下的产物,其在我国的发展过程中存在着很多问题,为解决这些问题。就必须提高收费公路制度的法律层次,完善收费公路的法律法规。 相似文献
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介绍了气垫登陆艇的故障现象,通过故障现象分析,对故障进行了定位,通过对故障件进行理化分析、金相组织分析、断口分析,设计图样与实物的制造符合性分析,最后采用实例建模进行了强度校核,得出某型气垫登陆艇燃气涡轮发电机组弹性轴断裂的故障模式。 相似文献
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Shared autonomous vehicles, or SAVs, have attracted significant public and private interest because of their opportunity to simplify vehicle access, avoid parking costs, reduce fleet size, and, ultimately, save many travelers time and money. One way to extend these benefits is through an electric vehicle (EV) fleet. EVs are especially suited for this heavy usage due to their lower energy costs and reduced maintenance needs. As the price of EV batteries continues to fall, charging facilities become more convenient, and renewable energy sources grow in market share, EVs will become more economically and environmentally competitive with conventionally fueled vehicles. EVs are limited by their distance range and charge times, so these are important factors when considering operations of a large, electric SAV (SAEV) fleet.This study simulated performance characteristics of SAEV fleets serving travelers across the Austin, Texas 6-county region. The simulation works in sync with the agent-based simulator MATSim, with SAEV modeling as a new mode. Charging stations are placed, as needed, to serve all trips requested (under 75 km or 47 miles in length) over 30 days of initial model runs. Simulation of distinctive fleet sizes requiring different charge times and exhibiting different ranges, suggests that the number of station locations depends almost wholly on vehicle range. Reducing charge times does lower fleet response times (to trip requests), but increasing fleet size improves response times the most. Increasing range above 175 km (109 miles) does not appear to improve response times for this region and trips originating in the urban core are served the quickest. Unoccupied travel accounted for 19.6% of SAEV mileage on average, with driving to charging stations accounting for 31.5% of this empty-vehicle mileage. This study found that there appears to be a limit on how much response time can be improved through decreasing charge times or increasing vehicle range. 相似文献
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This paper uses observations from before and during the Stockkholm congestion charging trial in order to validate and improve a transportation model for Stockholm. The model overestimates the impact of the charges on traffic volumes while at the same time it substantially underestimates the impact on travel times. These forecast errors lead to considerable underestimation of economic benefits which are dominated by travel time savings. The source of error lies in the static assignment that is used in the model. Making the volume-delay functions (VDFs) steeper only marginally improves the quality of forecast but strongly impacts the result of benefit calculations. We therefore conclude that the dynamic assignment is crucial for an informed decision on introducing measures aimed at relieving congestion. However, in the absence of such a calibrated dynamic model for a city, we recommend that at least a sensitivity analysis with respect to the slope of VDFs is performed. 相似文献