This chapter addresses a proper step-by-step mathematical procedure for implementing and designing the Type-2/3 compensators using the K-factor method that has not been previously described in any literature. This method offers a methodical and effective means of adjusting the K-factor and getting suitable values for compensator design. Synthesis of feedback compensators with any desired crossover frequency and phase margin is feasible using a few algebraic equations and the presented methodology. Type-2 compensators boost system damping to enhance closed-loop response, whereas Type-3 compensators insert a pole at the origin to eliminate steady-state error. This chapter examines the origin, use, advantages, disadvantages, and applications of the K-factor technique in the context of compensator design.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Design of Type Compensators Using K-factor Method

  • Adnan Mukhtar,
  • Arghya Chakravarty

摘要

This chapter addresses a proper step-by-step mathematical procedure for implementing and designing the Type-2/3 compensators using the K-factor method that has not been previously described in any literature. This method offers a methodical and effective means of adjusting the K-factor and getting suitable values for compensator design. Synthesis of feedback compensators with any desired crossover frequency and phase margin is feasible using a few algebraic equations and the presented methodology. Type-2 compensators boost system damping to enhance closed-loop response, whereas Type-3 compensators insert a pole at the origin to eliminate steady-state error. This chapter examines the origin, use, advantages, disadvantages, and applications of the K-factor technique in the context of compensator design.