This thesis discusses a boost converter using continuous conduction mode and discontinuous conduction mode. The first part of the thesis analyzes a boost converter using continuous conduction mode with voltage mode control. A switch network which eases the analysis of the boost converter is modeled. Important transfer functions are analyzed in detail to figure out the trade-off between input variables and specifications of the boost converter. Several types of compensators are discussed to build a stable system when feedback is included. The second part of the thesis addresses a boost converter using discontinuous conduction mode. The advantages, such as fast tracking and high gain bandwidth, of using discontinuous conduction mode over continuous conduction mode are discussed.
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Analysis of boost converter in continuous conduction mode and discontinuous conduction mode