An Error Compensation Method for Absolute Code Disk with Matrix Encoding
A coding method and error compensation technology, which is applied in the field of photoelectric measurement and automatic control, can solve the problems of insufficient ability of absolute code disc to deal with bit errors, and achieve the effect of improving bit error handling ability, convenient maintenance, and simple and reliable circuit
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[0035] Specific implementation mode one: combined with figure 1 The implementation process of the error compensation method of the absolute code disc in the matrix coding mode described in this embodiment is as follows:
[0036] Step 1. Use the four-quadrant absolute code disc to read the corresponding absolute code disc value W 1 ;
[0037] The four-quadrant absolute code disc obtains the corresponding absolute code disc value W through the precise code differential circuit 1 ;Such as Figure 5 As shown, the precise code differential circuit includes fixed value resistors R1, R2, R3, R4, R5, R6, R7, R8, R12, R13, R14, R15, R16, R17, R18, R19, R20 and R21, including The variable resistor (sliding rheostat) and variable resistor (sliding rheostat) 11 made of resistors R9 and R10 also include operational amplifier A1, operational amplifier A2, operational amplifier A3 and operational amplifier A4;
[0038]One input electrical signal is connected to one end of resistor R12 an...
Embodiment
[0056] Example: Combine Figure 1-7 Shown in detail, the realization process of the error compensation method of the absolute code wheel of the matrix coding method described in detail:
[0057] 1. The matrix-encoded photoelectric code disc reads the corresponding code value. Next, the four-quadrant matrix-encoded photoelectric code disc is used to analyze the encoding and decode the code value w 1 The acquisition process:
[0058] Matrix coding is a variant of Gray code, which can realize 12-bit code value coding with only four circles of code channels, which we call coarse code value, and then cooperate with the subdivided coding of code channels uniformly depicted on the outer circle to realize High-digit, high-resolution code disc encoding in high-precision fields such as aerospace. image 3 It is an eight-bit "matrix" code disc. We will use it as an example to discuss the encoding process. The innermost circle is the usual A1 code track, and the usual A1 and A2 code tra...
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