Solar PV is expected to become the most cost-competitive renewable energy owing to the rapidly decreasing cost of the system. On the other hand, hydropower is a high-quality and reliable regulating power source that c...Solar PV is expected to become the most cost-competitive renewable energy owing to the rapidly decreasing cost of the system. On the other hand, hydropower is a high-quality and reliable regulating power source that can be bundled with solar PV to improve the economic feasibility of long-distance transmitted power. In this paper, a quantification model is established taking into account the regulating capacity of the reservoir, the characteristics of solar generation, and cost of hydro and solar PV with long-distance transmission based on the installed capacity ratio of hydro–solar hybrid power. Results indicate that for hydropower stations with high regulating capacity and generation factor of approximately 0.5, a hydro–solar installed capacity ratio of 1:1 will yield overall optimal economic performance, whereas for hydropower stations with daily regulating capacity reservoir and capacity factor of approximately 0.65, the optimal hydro–solar installed capacity ratio is approximately 1:0.3. In addition, the accuracy of the approach used in this study is verified through operation simulation of a hydro–solar hybrid system including ultra high-voltage direct current(UHVDC) transmission using two case studies in Africa.展开更多
以上海多馈入直流规划系统为对象,采用常规稳定分析方法对系统存在的电压稳定问题类型进行了区分。利用静止无功补偿器(static var compensator,SVC)和调相机(synchronous condenser,SC)动态无功补偿装置以及直流换流站内无功控制、直...以上海多馈入直流规划系统为对象,采用常规稳定分析方法对系统存在的电压稳定问题类型进行了区分。利用静止无功补偿器(static var compensator,SVC)和调相机(synchronous condenser,SC)动态无功补偿装置以及直流换流站内无功控制、直流无功调制等方法提高了该系统抵御上海受端交流系统故障和直流闭锁的能力,改善了该系统的阻尼特性,形成了一套较完整的多馈入直流系统无功控制方法。仿真计算结果验证了该控制策略的正确性和有效性。展开更多
基金supported by the Global Energy Interconnection Group’s Science & Technology Project “Global Clean Energy Potential Estimating Model: Methodology and Application” (524500180011)
文摘Solar PV is expected to become the most cost-competitive renewable energy owing to the rapidly decreasing cost of the system. On the other hand, hydropower is a high-quality and reliable regulating power source that can be bundled with solar PV to improve the economic feasibility of long-distance transmitted power. In this paper, a quantification model is established taking into account the regulating capacity of the reservoir, the characteristics of solar generation, and cost of hydro and solar PV with long-distance transmission based on the installed capacity ratio of hydro–solar hybrid power. Results indicate that for hydropower stations with high regulating capacity and generation factor of approximately 0.5, a hydro–solar installed capacity ratio of 1:1 will yield overall optimal economic performance, whereas for hydropower stations with daily regulating capacity reservoir and capacity factor of approximately 0.65, the optimal hydro–solar installed capacity ratio is approximately 1:0.3. In addition, the accuracy of the approach used in this study is verified through operation simulation of a hydro–solar hybrid system including ultra high-voltage direct current(UHVDC) transmission using two case studies in Africa.
文摘以上海多馈入直流规划系统为对象,采用常规稳定分析方法对系统存在的电压稳定问题类型进行了区分。利用静止无功补偿器(static var compensator,SVC)和调相机(synchronous condenser,SC)动态无功补偿装置以及直流换流站内无功控制、直流无功调制等方法提高了该系统抵御上海受端交流系统故障和直流闭锁的能力,改善了该系统的阻尼特性,形成了一套较完整的多馈入直流系统无功控制方法。仿真计算结果验证了该控制策略的正确性和有效性。