0 50.036090281941 50.0367483793498 50.0195615359034
2 50.0361232479126 50.0369093887453 50.0195188240093
20 50.0363594446624 50.0382729216715 50.0191757617334
100 50.0360598760094 50.0419632458548 50.0184712742239
200 50.0331435117517 50.039995942718 50.0188442345439
500 50.0288750332103 50.0157828346402 50.018093427237
1000 50.0329828640265 50.0281936615661 50.0342013546007
2000 50.029599010895 50.0314038332878 50.0379686574494
表二 不同起点三相电相位差
n p1-p2 p2-p3 p3-p1
0 -240.882268366594 122.860738844139 118.021529522455
2 -240.872423581266 122.848525294691 118.023898286576
20 -240.787779993835 122.745428648124 118.042351345711
100 -240.511161141149 122.462156387821 118.049004753329
200 -240.407451719457 122.551489962266 117.85596175719
500 -241.163338935935 123.826834717937 117.336504217997
1000 -240.93985893497 124.090175960394 116.849682974575
2000 -240.627271305199 123.779448769737 116.847822535462
由表一表二可见,同一点三相频率f1,f2,,f3不相同, 如f1和f2差0.00x, 所以各点p1-p2相位差不会相同.只有f1和f2严格同频, 各点p1-p2相位差才相同
不同点同一频率f不相同, 如f1,差0.00x
所以你测的是A相电压的相位和B相电压的相位, 应该稳定的差120度, 我估计A相和B相的频率不严格同频,所以相位差精度能达到万分之一就不错了.
A相和B相的频率不严格同频可能是测量噪声引起, 但不明白为什么你测的整周波采样附近很稳定10万分之一,