电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2013年
14期
13-18
,共6页
唐磊%曾成碧%苗虹%徐伟%杨焰
唐磊%曾成碧%苗虹%徐偉%楊燄
당뢰%증성벽%묘홍%서위%양염
微电网%AC/DC双向变流器%联网运行%孤岛运行%控制策略
微電網%AC/DC雙嚮變流器%聯網運行%孤島運行%控製策略
미전망%AC/DC쌍향변류기%련망운행%고도운행%공제책략
microgrid%AC/DC bi-directional converter%grid-connected model operation%islanding model operation%control strategy
交直流混合微电网中的AC/DC双向变流器,对系统的稳定运行和功率的协调分配有着重要作用。为了使直流微电网部分作为一个电压功率可控的单元接入交流母线,提出了一种新的AC/DC双向变流器控制策略,用于平衡交直流微电网间的功率流动并提高系统联网和孤岛运行的稳定性及可控性。在联网模式时,新方法基于dq坐标系,通过直流侧电压外环给定内环直轴电流参考值,进而控制功率流动和联网运行。孤岛模式时,新方法以交直流母线的电压差值作为外环,控制功率在交直流母线间的流动,使其互为支撑,提高系统稳定性。与传统的并网控制不同,新方法在电压控制的基础上引入有功功率控制项,很好地解决了并网时功率流动的问题。通过对双向变流器及其控制策略的分析研究,给出新方法的状态方程及控制框图。仿真结果证明了该方法的可行性和有效性。
交直流混閤微電網中的AC/DC雙嚮變流器,對繫統的穩定運行和功率的協調分配有著重要作用。為瞭使直流微電網部分作為一箇電壓功率可控的單元接入交流母線,提齣瞭一種新的AC/DC雙嚮變流器控製策略,用于平衡交直流微電網間的功率流動併提高繫統聯網和孤島運行的穩定性及可控性。在聯網模式時,新方法基于dq坐標繫,通過直流側電壓外環給定內環直軸電流參攷值,進而控製功率流動和聯網運行。孤島模式時,新方法以交直流母線的電壓差值作為外環,控製功率在交直流母線間的流動,使其互為支撐,提高繫統穩定性。與傳統的併網控製不同,新方法在電壓控製的基礎上引入有功功率控製項,很好地解決瞭併網時功率流動的問題。通過對雙嚮變流器及其控製策略的分析研究,給齣新方法的狀態方程及控製框圖。倣真結果證明瞭該方法的可行性和有效性。
교직류혼합미전망중적AC/DC쌍향변류기,대계통적은정운행화공솔적협조분배유착중요작용。위료사직류미전망부분작위일개전압공솔가공적단원접입교류모선,제출료일충신적AC/DC쌍향변류기공제책략,용우평형교직류미전망간적공솔류동병제고계통련망화고도운행적은정성급가공성。재련망모식시,신방법기우dq좌표계,통과직류측전압외배급정내배직축전류삼고치,진이공제공솔류동화련망운행。고도모식시,신방법이교직류모선적전압차치작위외배,공제공솔재교직류모선간적류동,사기호위지탱,제고계통은정성。여전통적병망공제불동,신방법재전압공제적기출상인입유공공솔공제항,흔호지해결료병망시공솔류동적문제。통과대쌍향변류기급기공제책략적분석연구,급출신방법적상태방정급공제광도。방진결과증명료해방법적가행성화유효성。
The bidirectional converter of AC/DC hybrid microgrid plays a crucial role in the stable operation and power allocation of power system. In order to improve the stability of microgrid, this paper proposes a novel AC/DC bidirectional converter control strategy to keep the power balance of AC/DC microgrid. The new control strategy of microgrid is different in grid-connected mode and islanding mode. In the dq coordinate system, the bidirectional converter is able to control the power flow of microgrid in grid-connected mode through the direct axis current value which is calculated by the outer loop control of DC voltage. When it operates in islanding mode, the bidirectional converter controls the power flow between AC and DC through the voltage difference between AC and DC buses. Unlike the traditional control strategy, the active power control loop is introduced in the new algorithm. Then the DC microgrid becomes a controllable unit to incorporate into the AC bus which can improve the stability and controllability of microgrid. After the analysis of the bidirectional converter, the control block diagram of the new control strategy is given. Comprehensive simulation results indicate that the system based on new control method is stable and effective.