Changes for page 07 Adjustments
Last modified by Iris on 2025/07/24 11:03
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... ... @@ -333,6 +333,10 @@ 333 333 334 334 Table 7-9 Speed feedforward parameters 335 335 336 +[[image:image-20220706155307-4.jpeg]] 337 + 338 +Figure 7-6 Speed feedforward parameters effect illustration 339 + 336 336 (% class="table-bordered" %) 337 337 |(% style="text-align:center; vertical-align:middle; width:125px" %)**Function code**|(% style="text-align:center; vertical-align:middle; width:330px" %)**Name**|(% style="text-align:center; vertical-align:middle; width:746px" %)**Adjustment description** 338 338 |(% style="text-align:center; vertical-align:middle; width:125px" %)P02-11|(% style="text-align:center; vertical-align:middle; width:330px" %)Torque feedforward gain|(% rowspan="2" style="width:746px" %)Increase the torque feedforward gain because the position deviation can be close to 0 during certain acceleration and deceleration. Under the ideal condition of external disturbance torque not operating, when driving in the trapezoidal speed model, the position deviation can be close to 0 in the entire action interval. In fact, there must be external disturbance torque, so the position deviation cannot be zero. In addition, like the speed feedforward, although the larger the constant of the torque feedforward filter, the smaller the action sound, but the greater the position deviation of the acceleration change point. ... ... @@ -351,7 +351,7 @@ 351 351 By setting the filter time constant, the torque instruction is attenuated in the high frequency range above the cutoff frequency, so as to achieve the expectation of suppressing mechanical resonance. The cut-off frequency of the torque instruction filter could be calculated by the following formula: 352 352 353 353 (% style="text-align:center" %) 354 -[[image: https://docs.we-con.com.cn/bin/download/Servo/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/07%20Adjustments/WebHome/40.png?rev=1.1]]358 +[[image:image-20220706155820-5.jpeg]] 355 355 356 356 **(2) Notch filter** 357 357 ... ... @@ -366,9 +366,9 @@ 366 366 The notch width grade is used to express the ratio of the notch width to the center frequency of the notch: 367 367 368 368 (% style="text-align:center" %) 369 -[[image: https://docs.we-con.com.cn/bin/download/Servo/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/07%20Adjustments/WebHome/41.png?rev=1.1]]373 +[[image:image-20220706155836-6.png]] 370 370 371 -In formula (7-1), [[image: https://docs.we-con.com.cn/bin/download/Servo/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/07%20Adjustments/WebHome/42.png?rev=1.1]] is the center frequency of notch filter, that is, the mechanical resonance frequency; [[image:https://docs.we-con.com.cn/bin/download/Servo/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/07%20Adjustments/WebHome/43.png?rev=1.1]] is the width of notch filter, which represents the frequency bandwidth with an amplitude attenuation rate of **-3dB** relative to the center frequency of notch filter.375 +In formula (7-1), [[image:image-20220706155946-7.png]] is the center frequency of notch filter, that is, the mechanical resonance frequency; [[image:image-20220706155952-8.png]] is the width of notch filter, which represents the frequency bandwidth with an amplitude attenuation rate of **-3dB** relative to the center frequency of notch filter. 372 372 373 373 **(2) Depth grade of notch filter** 374 374 ... ... @@ -379,13 +379,10 @@ 379 379 (% style="text-align:center" %) 380 380 [[image:image-20220608174259-3.png]] 381 381 382 -Figure 7- 3Notch characteristics, notch width, and notch depth386 +Figure 7-7 Notch characteristics, notch width, and notch depth[[image:image-20220706160046-9.png]] 383 383 384 -(% style="text-align:center" %) 385 -[[image:https://docs.we-con.com.cn/bin/download/Servo/2.%20User%20Manual/06%20VD2%20SA%20Series%20Servo%20Drives%20Manual%20%28Full%20V1.1%29/07%20Adjustments/WebHome/44.png?rev=1.1]] 388 +Figure 7-8 Frequency characteristics of notch filter 386 386 387 -Figure 7-4 Frequency characteristics of notch filter 388 - 389 389 (% class="table-bordered" %) 390 390 |(% style="text-align:center; vertical-align:middle; width:113px" %)**Function code**|(% style="text-align:center; vertical-align:middle; width:197px" %)**Name**|(% style="text-align:center; vertical-align:middle; width:143px" %)((( 391 391 **Setting method**
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