FPGA based fine tracking control system for Blu-ray disc system considering 1.5µsec delay time

Recently, the data size of digital content has increased. To address the resultant storage issues, manufacturers have tried to increase storage capacity by narrowing the track pitch of digital storage media.[1] Considering all these factors, a high-precision tracking control system is required for optical discs. In this study, this paper develop and implement a feedforward control system using an trajectory command prediction mechanism to effectively suppress periodic components by field-programmable gate array (FPGA). This paper proposes a zero-phase error-tracking feedforward control system[2], [3] that considers the delay time component. This paper design and implement the propose control system for a test system, the ODU-1000 for Blu-ray, which is implanted in a digital signal processor (DSP). The results show that there is increased delay time because of the calculation time. In the configuration of the control system, this paper implement both feedback and feedforward control systems using a FPGA. The control system realizes high-speed control operation as a hardware controller. Experimental results obtain confirm that the propose system is practical and effective.

[1]  Kimihiro Saito,et al.  High-Density Recording with a Near-Field Optical Disk System Using a Medium with a Top Layer of High Refractive Index , 2009 .

[2]  Yoshiyuki Urakawa,et al.  A Study of High-Gain Servo Controller with Complex Zeros for Optical Disk Drives , 2005 .

[3]  Kiyoshi Ohishi,et al.  Fine Tracking Control System based on Double Equivalent-Perfect Tracking Control System and Error-Based Disturbance Observer for Optical Disk , 2015 .

[4]  Kiyoshi Ohishi,et al.  Robust tracking servo system considering force disturbance for the optical disk recording system , 2006, IEEE Transactions on Industrial Electronics.

[5]  Seiichiro Katsura,et al.  Development of multi degrees-of-freedom bilateral forceps robot system using FPGA , 2007 .

[6]  Kouhei Ohnishi,et al.  Bilateral teleoperation through networks , 2006 .

[7]  Kiyoshi Ohishi,et al.  Zero phase error tracking control system with multi harmonics disturbance suppression loop , 2010, 2010 11th IEEE International Workshop on Advanced Motion Control (AMC).

[8]  Masayoshi Tomizuka,et al.  Zero Phase Error Tracking Algorithm for Digital Control , 1987 .

[9]  Yoshiyuki Urakawa,et al.  演算時間遅れのあるディジタル制御系での限定極配置法による制御パラメータ算出について;演算時間遅れのあるディジタル制御系での限定極配置法による制御パラメータ算出について;Parameter Design for a Digital Control System with Calculation Delay Using a Limited Pole Placement Method , 2013 .