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盐酸氯丙嗪在碳纤维电极上伏安行为研究 被引量:1
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作者 张杰 孙革 李红梅 《高师理科学刊》 2000年第1期29-30,共2页
通过循环伏安法,研究了盐酸氯丙嗪在不同的pH底液条件下在碳纤维电极上的氧化还原性质,得出了底液pH值与盐酸氯丙嗪的氧化峰电势及峰电流之间的关系,确定了碳纤维电极上伏安法检测盐酸氯丙嗪的最佳实验条件.
关键词 盐酸氯丙嗪 碳纤维电极 循环伏安法 抗精神病药
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利用对系统误差修正的逆测法测量电表的内阻
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作者 康伟芳 薛玉春 《大学物理实验》 2008年第2期47-49,共3页
本文在伏安法测电阻实验的基础上,将系统误差修正方法进行逆运用,介绍一种测量电表内阻的方法。
关键词 系统误差 电表内阻 伏安法 内接法 外接法
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Energy Savings Estimation of a Distribution System in Presence of Intelligent Volt-VAr Control Based on IEEE Std.1547-2018 被引量:1
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作者 Saran Satsangi G.B.Kumbhar 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2022年第5期1477-1486,共10页
In the present scenario,many solar photovoltaic(SPV)systems have been installed in the distribution network,most of them are operating at the unity power factor,which does not provide any reactive power support.In fut... In the present scenario,many solar photovoltaic(SPV)systems have been installed in the distribution network,most of them are operating at the unity power factor,which does not provide any reactive power support.In future distribution grids,there will be significant advances in operating strategies of SPV systems with the introduction of smart inverter functions.The new IEEE Std.1547-2018 incorporates dynamic Volt/VAr control(VVC)for smart inverters.These smart inverters can inject or absorb reactive power and maintain voltages at points of common coupling(PCCs)based on local voltage measurements.With multiple inverter-interfaced SPV systems connected to the grid,it becomes a necessary task to develop local,distributed or hybrid VVC algorithms for maximization of energy savings.This paper aims to estimate substation energy savings through centralized and decentralized control of inverters of SPV system alongside various VVC devices.Control strategies of each SPV inverter have been accomplished in compliance with IEEE Std.1547-2018.Time-series simulations are carried out on the modified IEEE-123 node test system.By utilizing smart inverters in traditional SPV systems,considerable energy savings can be obtained.These savings can be further increased by incorporating optimal intelligent VVC characteristics(IVVCC).Results show that just by allowing smart inverters on a predefined IVVCC(as per IEEE Std.1547-2018),a reduction of 11.69%in reactive demand and 5.63%in active demand have been acquired when compared with a conventional SPV system.Reactive energy demand is additionally reduced to 48.42%by considering centralized control of VVC devices alongside optimal IVVCC. 展开更多
关键词 Conservation voltage reduction IEEE Std.1547-2018 smart inverter functions solar photovoltaic system volt/VAr control volt/VAr optimization
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