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[1] Yuanyuan Sun*, Xiangmin Xie, Qingyan Wang, Linghan Zhang, Yahui Li, Zongshuai Jin. A bottom-up approach to evaluate the harmonics and power of home appliances in residential areas [J]. Applied Energy, 2020, 259: 114207. (SCI)

[2] Yuanyuan Sun*, Xiangmin Xie, Linghan Zhang, Shurong Li. A voltage adaptive dynamic harmonic model of nonlinear home appliances [J]. IEEE Transactions on Industrial Electronics, 2020, 67(5): 3607-3617. (SCI)

[3] Yahui Li, Yuanyuan Sun*, Qingyan Wang, Kaiqi Sun, Kejun Li, Yan Zhang. Probabilistic harmonic forecasting of the distribution system considering time-varying uncertainties of the distributed energy resources and electrical loads[J]. Applied Energy, 2023, 329. (SCI)

[4] Yahui Li, Yuanyuan Sun*, Kejun Li, Kaiqi Sun, Zhijie Liu, Qingshen Xu. Harmonic modeling of the series-connected multipulse rectifiers under unbalanced conditions[J]. IEEE Transactions on Industrial Electronics, 2023, 70(7):6494-6505. (SCI)

[5] Yuanyuan Sun*, Shurong Li, Qingshen Xu, Xiangmin Xie, Zongshuai Jin, Fang Shi, Hengxu Zhang. Harmonic contribution evaluation based on the distribution-level PMUs[J]. IEEE Transactions on Power Delivery, 2020, 36(2): 909-919. (SCI)

[6] Xiangmin Xie, Yuanyuan Sun*, Qingyan Wang, Yahui Li, Yan Zhang, Linghan Zhang. A piecewise probabilistic harmonic model of aggregate residential loads [J]. IEEE Transactions on Power Delivery, 2021, 36(2): 841-852. (SCI)

[7] Qingshen Xu, Yuanyuan Sun*, Yahui Li, Lei Ding, Kaiqi Sun, Shulin Yin, Xingong Cheng, Yang Liu. A generalized admittance criterion for dominant harmonic source determination without synchronous phasor measurements[J]. International Journal of Electrical Power & Energy Systems, 2024, 155: 109481. (SCI)

[8] Shulin Yin, Yuanyuan Sun*, Qingshen Xu, Kaiqi Sun, Yahui Li, Lei Ding, Liuyang. Multi-harmonic sources identification and evaluation method based on cloud-edge-end collaboration[J]. International Journal of Electrical Power & Energy Systems, 2024, 156: 109681. (SCI)

[9] Yuanyuan Sun*, Yue Hua, Erdong Wang, Na Li, Shuo Ma, Lina Zhang, Yiru Hu. A temperature-based fault pre-warning method for the dry-type transformer in the offshore oil platform[J]. International Journal of Electrical Power & Energy Systems, 2020, 123: 106218. (SCI)

[10] Yue Hua, Yuanyuan Sun*, Gongde Xu, Shengya Sun, Erdong Wang, Yanqing Pang. A fault diagnostic method for oil-immersed transformer based on multiple probabilistic output algorithms and improved DS evidence theory[J]. International Journal of Electrical Power & Energy Systems, 2022, 137: 107828. (SCI)

[11] Rui Yin, Yuanyuan Sun*, Shanshan Wang, Bing Zhao, Guanglu Wu, Shanmeng Qin, Lin Yu, Yuetong Zhao. Modeling and stability analysis of grid-tied VSC considering the impact of voltage feed-forward[J]. International Journal of Electrical Power & Energy Systems, 2022, 135: 107483. (SCI-)

[12] Zhao Ma, Yahui Li, Yuanyuan Sun*, Kaiqi Sun. Low voltage direct current supply and utilization system: definition, key technologies and development[J]. CSEE Journal of Power and Energy Systems, 2023, 9(1):331-350. (SCI)

[13] Rui Yin, Huadong Sun, Yuanyuan Sun*, Bing Zhao, Shanshan Wang, Guanglu Wu, Kaiqi Sun. Non-minimum phase behavior analysis of the weak grid-tied VSC's q-axis current control dynamics[J]. IEEE Transactions on Power Delivery, 2023, 38(2): 1493-1496. (SCI)

[14] Rui Yin, Yuanyuan Sun*, Shanshan Wang, Lu Zhang. Stability analysis of the grid tied VSC considering the influence of short circuit ratio and X/R[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2021, 69(1): 129-133. (SCI)

[15] Yuanyuan Sun*, Chuankai Dai, Jiaqi Li, Jing Yong. Frequency-domain harmonic matrix model for three-phase diode-bridge rectifier[J]. IET Generation, Transmission & Distribution, 2016, 10(7): 1605-1614. (SCI)

[16] ÀîÑÇ»Ô, ËïæÂæÂ*, ÍõÇìÑÒ, ¶¡ÀÚ, Ëï¿­ì÷, ÁõÑó, ³Ìй¦. »ùÓÚÔ´ºÉг²¨ñîºÏÄ£Ð͵ÄÊý¾ÝÇý¶¯¸ÅÂÊг²¨³±Á÷¼ÆËã[J/OL]. Öйúµç»ú¹¤³Ìѧ±¨, 1-12[2024-01-18].

[17] Òüî£, ËïæÂæÂ*, Íõæ©æ©, ÕÔ±ø, Îâ¹ã», ÑîÅβ©, ÇØÉÆÃÈ, ÕÔÔÃÍ®. Ë«À¡ÈëVSC²¢Íøϵͳµ¥ÊäÈëµ¥Êä³ö´«µÝº¯Êý½¨Ä£ÓëÎȶ¨ÐÔ·ÖÎö[J]. Öйúµç»ú¹¤³Ìѧ±¨, 2021, 41(19): 6724-6739.

[18] лÏãÃô, ËïæÂæÂ*, ÕÅÁèÝÕ, ºÍ½¨³É, ÕÅÑÒ, °²Åô. ¼ÒÓõçÆ÷·ÇÏßÐÔ¸ººÉµÄ¶¯Ì¬×ÔÊÊӦг²¨½¨Ä£[J]. Öйúµç»ú¹¤³Ìѧ±¨, 2020, 40(8): 2479-2489.

[19] ËïæÂæÂ*, ÕÅÁèÝÕ, лÏãÃô, ·ëÕÕ·É, Íõæ©æ©. »ùÓÚг²¨ñîºÏÖ÷µ¼·ÖÁ¿Ä£Ð͵ľÓÃñ¸ººÉ¼¯ºÏÐÔг²¨ÆÀ¹À[J]. Öйúµç»ú¹¤³Ìѧ±¨, 2019, 39(16): 4775-4785+4979.

[20] ËïæÂæÂ*, ÀîÊ÷ÈÙ, ʯ·Ã, ÕźãÐñ. º¬·Ö²¼Ê½Ð³²¨Ô´µÄÅäµçÍø¶àг²¨Ô´ÔðÈλ®·Ö[J]. Öйúµç»ú¹¤³Ìѧ±¨, 2019, 39(18): 5389-5398+5586.

[21] ËïæÂæÂ*, Áõ¸£³¯, Àî¼ÑÆæ, ÕÅÀ¤. ÈýÏ಻¿ØVSCµÄͳһ»¯Ð³²¨Ä£Ðͼ°ÔËÐÐ״̬Åж¨[J]. Öйúµç»ú¹¤³Ìѧ±¨, 2016, 36(13): 3413-3421.

[22] ËïæÂæÂ*, Àî¼ÑÆæ, ÒüÖ¾Ã÷, Íõ¹ãÖù. º¬²»¿ØÕûÁ÷µÄ½»-Ö±-½»±ä»»Æ÷ƵÓòг²¨·ÖÎöÄ£ÐÍ[J]. Öйúµç»ú¹¤³Ìѧ±¨, 2015, 35(21): 5483-5491.

[23] ËïæÂæÂ*, ÐíÇìŸö, ÂíîÈ, ¶¡ÀÚ, Íõͬѫ, Àî¿É¾ü. Êý×Ö»¯±³¾°ÏÂÐÂÐ͵çÁ¦ÏµÍ³Ð³²¨ËÝÔ´¹Ø¼ü¼¼Êõ[J/OL]. µçÁ¦ÏµÍ³×Ô¶¯»¯,1-19[2024-01-18].

[24] ËïæÂæÂ*, ³Ì¿­Ç¿, ÐíÇìŸö, ÀîµÀÓî, ÀîÑÇ»Ô. ¿¼Âǹâ·ü³öÁ¦Ïà¹ØÐÔµÄÖ÷¶¯ÅäµçÍø±¡Èõ»·½Úʶ±ð[J/OL]. µçÁ¦ÏµÍ³×Ô¶¯»¯, 2022, 06(12): 1-15.

[25] ÀîÑÇ»Ô, ËïæÂæÂ*, Àî¿É¾ü, ÐíÇìŸö, ÍõÇìÑÒ. ²»Æ½ºâ¹©µçÌõ¼þ϶àÂö¶¯ÕûÁ÷Æ÷µÄг²¨ÌØÐÔ·ÖÎö[J]. µçÁ¦ÏµÍ³×Ô¶¯»¯, 2021, 45(23):152-161.

[26] ÍõÇìÑÒ, ËïæÂæÂ*, лÏãÃô, ÀîÑÇ»Ô, ÐíÇìŸö, ÕÅÑÒ. »ùÓڸĽø¶àµã¹À¼ÆÓë×î´óìصĸÅÂÊг²¨³±Á÷Ëã·¨[J]. µçÁ¦ÏµÍ³×Ô¶¯»¯, 2021, 45(02): 74-81.

[27] ËïæÂæÂ*, ÀîÅàöÎ, ÒüÖ¾Ã÷. »ùÓÚÃÅÏÞµçѹ·¨µÄг²¨Ô´¶¨Î»[J]. µçÁ¦ÏµÍ³×Ô¶¯»¯, 2015, 39(23): 145-151.


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[1] A harmonic contribution evaluation system based on cloud-edge-end collaboration, ÉêÇëºÅ£ºPCT/CN2022/137579, ÉêÇëÈÕ£º2022.12.8.£¨PCT¹ú¼ÊרÀû£©

[2] Ò»ÖÖÅäµçÍø¹â·ü×î´ó×¼È빦ÂÊÆÀ¹À·½·¨¼°ÏµÍ³, ZL202310973049.4, 2023.10.27.

[3] ·Ö²¼Ê½¹â·üг²¨¶¨Á¿ÆÀ¹À·½·¨¡¢ÏµÍ³¡¢ÖÕ¶ËÉ豸¼°½éÖÊ, ZL202310658384.5, 2023.08.18.

[4] ÐÂÄÜÔ´¹Âµº¾­ÈáÖ±µçÍøËͳöϵͳ²ÎÊýÓÅ»¯·½·¨¼°ÏµÍ³, ZL202110908364.X, 2023.08.08.

[5] »ùÓÚË«ÖØÏà¹ØÖ¸±êµÄг²¨·¢ÉäˮƽÄ£ºýÆÀ¼Û·½·¨¼°ÏµÍ³, ZL202310092927.1, 2023.05.09.

[6] Ò»ÖÖ¿¼ÂÇ·Ö²¼Ê½¹â·üг²¨ñîºÏµÄʱ±äµçÁ÷ÆÀ¹À·½·¨¼°ÏµÍ³, ZL202211017156.1, 2023.04.11.

[7] ÓÃÓÚÒÖÖƵçѹԽÏ޵Ĺâ·üÄæ±äÆ÷¿ØÖÆ·½·¨¼°ÏµÍ³, ZL 202210394803.4, 2023.03.24.

[8] Ò»ÖÖ·ÇÀíÏëÌõ¼þ϶àÂö²¨ÕûÁ÷Æ÷µÄг²¨ÆÀ¹À·½·¨, ZL 202210972065.7, 2023.03.17.

[9] ÈýÏ಻ƽºâÔËÐй¤¿öÏÂ6Âö²¨ÕûÁ÷Æ÷г²¨µçÁ÷ÆÀ¹À·½·¨, ZL 202210395958.X, 2023.03.17.

[10] Ò»ÖÖ»ùÓÚÔƱ߶ËЭͬµÄг²¨ËÝԴϵͳ¼°·½·¨, ZL 202210979469.9, 2022.11.18.

[11] ·Ö²¼Ê½¹â·üÖÇÄÜסլµÄÐèÇóÏìÓ¦µ÷¶È·½·¨¼°ÏµÍ³, ZL 202211030305.8, 2022.11.18.

[12] Ò»ÖÖLCC-MMC»ìºÏ¼¶ÁªÖ±Á÷µçÍøÊܶËMMCÎȶ¨ÔËÐÐÓòµÄÈ·¶¨·½·¨, ZL 202211010621.9, 2022.11.18.

[13] »ùÓÚÔ´ºÉµÈЧµ¼ÄɵĄ̈Çøг²¨ÔðÈζ¨ÐÔÆÀ¹À·½·¨¼°ÏµÍ³, ZL 202210997501.6, 2022.11.15.

[14] ¿¼ÂǼÄÉú²ÎÊýµÄ¶àÓÐÔ´Çű任Æ÷ÔÝ̬Õñµ´ÒÖÖÆ·½·¨¼°µç·, ZL 202210952793.1, 2022.11.01.

[15] Ò»ÖÖ»ùÓÚÓÐÏÞÁ¿²âµÄÅäµçÍø·ÖÇøг²¨ÔðÈÎÆÀ¹À·½·¨¼°ÏµÍ³, ZL 202210415230.9, 2022.10.18.

[16] »ùÓÚ¹¦Âʷֶεĵ绡¯¹©µçϵͳг²¨ÆÀ¹À·½·¨Óëϵͳ, ZL 202210874719.2, 2022.10.14.

[17] »ùÓÚÀ©Õ¹Ð³²¨ÓòÄ£Ð͵ķçÁ¦·¢µçϵͳÊä³ö¼à²â·½·¨¼°ÏµÍ³, ZL 2020105480693, 2022.07.01.

[18] Ò»ÖÖÖ±Çý·ç»ú¾­ÈáÖ±ËͳöϵͳÎȶ¨ÐÔ·ÖÎö·½·¨¼°ÏµÍ³, ZL 202110161033.4, 2022.06.21.

[19] Ò»ÖÖº£ÉÏƽ̨¸Éʽ±äѹÆ÷״̬¼à²âÓë¹ÊÕÏÔ¤¾¯·½·¨, ZL 202010021502.8, 2022.05.03.

[20] Ò»ÖÖÓÃÓÚ·ÖÎöµçÍø²»È·¶¨ÐÔ³±Á÷µÄ·½·¨¼°ÏµÍ³, ZL 202010115626.2, 2022.03.11.

[21] »ùÓÚÐéÄâµ÷ÖƵıÕËø¹ÊÕϺóÖ±Á÷¹ýµçѹÒÖÖÆ·½·¨¼°ÏµÍ³, ZL 202010104816.4, 2021.10.26.

[22] Ò»ÖÖË«À¡ÈëVSCÊäµçϵͳÎȶ¨ÐÔÆÀ¹À·½·¨¼°ÏµÍ³, ZL 202010759368.1, 2021.09.24.

[23] Ò»ÖÖÓÃÓÚ½¨Á¢¼¯ºÏÐÔ¾ÓÃñ¸ººÉµÄг²¨½¨Ä£·½·¨¼°ÏµÍ³, ZL 201911090121.9, 2021.09.03.

[24] »ùÓڸĽøÈÈÍøÂçÄ£Ð͵ıäѹÆ÷ÈȵãζÈʶ±ð·½·¨¼°ÏµÍ³, ZL 202010467489.9, 2021.05.18.

[25] ÈõµçÍøÁ¬½ÓϵçѹԴÐÍ»»Á÷Æ÷µçѹǰÀ¡»·½Ú×÷Ó÷ÖÎö·½·¨, ZL 201911113979.2, 2021.01.05.

[26] Ò»ÖÖ»ùÓÚʵ²âÊý¾Ý½¨Á¢¼ÒÓõçÆ÷¸ººÉг²¨Ä£Ð͵ķ½·¨, ZL 201811258954.7, 2020.10.30.

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[28] Ò»ÖÖÊý¾ÝÇý¶¯µÄ¹©µç±¡Èõ»·½Úʶ±ð·½·¨¼°ÏµÍ³, ZL 201911044830.3, 2020.06.09.

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[30] Ò»ÖÖÅäµçϵͳÖй«¹²ñîºÏµã´¦²»Æ½ºâÔðÈεĶ¨Á¿¼ÆËã·½·¨, ZL 201710408798.7, 2020.01.14.


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