[1] 赵畹君. 高压直流输电工程技术[M]. 北京:中国电力出版社,2004:267-289. [2] SARMA M P, JANISHEWSKYJ W. Analysis of corona losses on DC transmission lines, part Ⅰ-unipolar lines[J]. IEEE Transactions on Power Apparatus and Systems, 1969, 88(5): 718-731. [3] SARMA M P, JANISHEWSKYJ W. Analysis of corona losses on DC transmission lines, part Ⅱ-bipolar lines[J]. IEEE Transactions on Power Apparatus and Systems, 1969, 88(10): 1476-1489. [4] 张乔根,王清亮,张璐,等. 污秽条件下±800 kV直流输电线路电晕特性[J]. 高电压技术,2010,36(1):31-36. ZHANG Qiao-gen, WANG Qing-liang, ZHANG Lu, et al . Corona characteristics of ±800 kV UHVDC polluted transmission lines [J]. High Voltage Engineering, 2010, 36(1): 31-36. [5] 刘琴,谢雄杰,石岩. 电晕笼内多分裂导线电晕损耗[J].中国电力,2011,44(12):32-35. LIU Qin, XIE Xiong-jie, SHI Yan. Corona loss of bundle conductor in corona cage [J]. Electric Power, 2011, 44(12): 32-35. [6] 傅宾兰. 高压直流输电线路地面合成场强与离子流密度的计算[J]. 中国电机工程学报,1987,7(5):56-63. FU Bin-lan. Calculation of the ground total electric field strength and ion current density under HVDC overhead transmission lines [J]. Proceedings of the CSEE, 1987, 7(5): 56-63. [7] TAKUMA T, IKEDA T, KAWAMOTO T. Calculation of ion flow fields of HVDC transmission lines by the finite element method[J]. IEEE Transactions on Power Apparatus and Systems, 1981, 100(12):4802-4810. [8] EPRI Report EL-2794. Bipolar HVDC transmission system study between ±600 kV and ±1 200 kV: corona studies[R]. California: Palt Alto, 1982. [9] 杨勇,陆家榆,雷银照. 同塔双回高压直流线路地面合成电场的计算方法[J].中国电机工程学报,2008,28(6):32-36. YANG Yong, LU Jia-yu, LEI Yin-zhao. Calculation of the total electric field at ground level for double-circuit HVDC overhead transmission lines [J]. Proceedings of the CSEE, 2008, 28(6): 32-36. [10] DL/T 436—2005 高压直流架空送电线路技术导则[S]. [11] 泰西蒙公司. 葛洲坝-上海直流输电线路研究[R]. 温尼伯,加拿大:泰西蒙公司,1983. [12] MARUVADA P S, WASYL J. Analysis of corona losses on DC transmission lines part I-Unipolar lines [J]. IEEE Transactions on Power Apparatus and Systems, 1969, 88(5): 718-731. [13] Doe/RA12133-10 超高压特高压架空输电线路电气与机械设计规范[S]. 美国能源部,1980. [14] GB 3096—1993 城市区域噪声标准[S]. [15] ICNRP Guidelines for limiting exposure to time-varying electric, magnetic, and electromagnetic fields (up to 300 GHz), 1998. [16] CISPR Publication 18-1-1982 Radio interference characteristics of overhead power lines and high-voltage equipment Part 1: description of phenomena [S]. |