电器与能效管理技术
電器與能效管理技術
전기여능효관리기술
Low Voltage Apparatus
2014年
21期
41-46,78
,共7页
周福举%张宸宇%郑建勇%胡洛蠧
週福舉%張宸宇%鄭建勇%鬍洛蠧
주복거%장신우%정건용%호락두
混合储能系统%PCC母线电压%超级电容%蓄电池%能量管理
混閤儲能繫統%PCC母線電壓%超級電容%蓄電池%能量管理
혼합저능계통%PCC모선전압%초급전용%축전지%능량관리
hybrid energy storage system%PCC bus voltage%super-capacitor%battery%energy management
为了平抑间歇性微电源引起的功率波动,研究了基于超级电容和蓄电池的混合储能电压源逆变器(VSI)控制策略,设计了混合储能系统两级能量管理方法。将超级电容作为系统一级缓冲储能优先平抑微电网功率波动。并网运行时配电网作为二级储能,通过控制联络线功率,使超级电容端电压稳定在充放电限值以内,同时维持公共连接点(PCC)母线电压在允许范围内变化;孤岛运行时蓄电池作为二级储能,通过超级电容的缓冲作用减少蓄电池充放电次数,延长蓄电池使用寿命,当超级电容达到充放电警戒值时,精确控制蓄电池以恒功率输出,调节超级电容端电压恢复到正常值。仿真结果验证了方法的有效性。
為瞭平抑間歇性微電源引起的功率波動,研究瞭基于超級電容和蓄電池的混閤儲能電壓源逆變器(VSI)控製策略,設計瞭混閤儲能繫統兩級能量管理方法。將超級電容作為繫統一級緩遲儲能優先平抑微電網功率波動。併網運行時配電網作為二級儲能,通過控製聯絡線功率,使超級電容耑電壓穩定在充放電限值以內,同時維持公共連接點(PCC)母線電壓在允許範圍內變化;孤島運行時蓄電池作為二級儲能,通過超級電容的緩遲作用減少蓄電池充放電次數,延長蓄電池使用壽命,噹超級電容達到充放電警戒值時,精確控製蓄電池以恆功率輸齣,調節超級電容耑電壓恢複到正常值。倣真結果驗證瞭方法的有效性。
위료평억간헐성미전원인기적공솔파동,연구료기우초급전용화축전지적혼합저능전압원역변기(VSI)공제책략,설계료혼합저능계통량급능량관리방법。장초급전용작위계통일급완충저능우선평억미전망공솔파동。병망운행시배전망작위이급저능,통과공제련락선공솔,사초급전용단전압은정재충방전한치이내,동시유지공공련접점(PCC)모선전압재윤허범위내변화;고도운행시축전지작위이급저능,통과초급전용적완충작용감소축전지충방전차수,연장축전지사용수명,당초급전용체도충방전경계치시,정학공제축전지이항공솔수출,조절초급전용단전압회복도정상치。방진결과험증료방법적유효성。
In order to smooth the power fluctuations caused by intermittent micro power source,the control strategy of hybrid energy storage based on super-capacitor and battery was researched and a two stage management method of hybrid energy storage was designed.To take full advantage of large power density and long cycle life of super-capacitor in charging and discharging,it is used as the first buffer energy storage to smooth the power fluctuations priority in this method.Distribution network is used as second energy storage when the microgrid is under grid-connected operation.The power of tie line is controlled to make the terminal voltage of super-capacitor within limits and maintain PCC bus voltage fluctuation within the permissible range.Battery is used as second energy storage when the microgrid is under island operation.The charging and discharging times of battery are reduced by the buffering effect of super-capacitor and the life of battery is prolonged.When the terminal voltage of super-capacitor reaches to alert value,battery is controlled accurately to constant power output,so the terminal voltage of super-capacitor is returned to normal value.The simulation results show that the method is effective.