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DOCUMENT FORMAT
• Abstract:
• Introduction:
• Literature Survey:
• System Analysis:
• Existing System:
• Disadvantages:
• Proposed System:
• Advantages:
• System Requirements:
• Block Diagram:
• Working Flow Diagram:
• Circuit Diagram:
• Implementation:
• Modules Description:
• System Study:
• System Testing:
• Software Description:
• Sample code:
• Conclusion:
• Future Enhancement:
• References:
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A HIGH-PERFORMANCE FIR FILTER ARCHITECTURE FOR
FIXED AND RECONFIGURABLE APPLICATIONS
TITLE
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ABSTRACT
Transpose form finite-impulse response (FIR) filters are inherently pipelined and
support multiple constant multiplications (MCM) technique that results in significant
saving of computation. However, transpose form configuration does not directly
support the block processing unlike directform configuration. In this paper, we explore
the possibility of realization of block FIR filter in transpose form configuration for area-
delay efficient realization of large order FIR filters for both fixed and reconfigurable
applications. Based on a detailed computational analysis of transpose form
configuration of FIR filter, we have derived a flow graph for transpose form block FIR
filter with optimized register complexity. A generalized block formulation is presented
for transpose form FIR filter.
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A high performance fir filter architecture for fixed and reconfigurable applications

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  • 2. DOCUMENT FORMAT • Abstract: • Introduction: • Literature Survey: • System Analysis: • Existing System: • Disadvantages: • Proposed System: • Advantages: • System Requirements: • Block Diagram: • Working Flow Diagram: • Circuit Diagram: • Implementation: • Modules Description: • System Study: • System Testing: • Software Description: • Sample code: • Conclusion: • Future Enhancement: • References: OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE /BANGALORE / HYDRABAD CELL: +91 99436 99916 / 99436 99926 / 99436 99936
  • 3. A HIGH-PERFORMANCE FIR FILTER ARCHITECTURE FOR FIXED AND RECONFIGURABLE APPLICATIONS TITLE OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE /BANGALORE / HYDRABAD CELL: +91 99436 99916 / 99436 99926 / 99436 99936
  • 4. ABSTRACT Transpose form finite-impulse response (FIR) filters are inherently pipelined and support multiple constant multiplications (MCM) technique that results in significant saving of computation. However, transpose form configuration does not directly support the block processing unlike directform configuration. In this paper, we explore the possibility of realization of block FIR filter in transpose form configuration for area- delay efficient realization of large order FIR filters for both fixed and reconfigurable applications. Based on a detailed computational analysis of transpose form configuration of FIR filter, we have derived a flow graph for transpose form block FIR filter with optimized register complexity. A generalized block formulation is presented for transpose form FIR filter. OUR OFFICES @ CHENNAI / TRICHY / KARUR / ERODE / MADURAI / SALEM / COIMBATORE /BANGALORE / HYDRABAD CELL: +91 99436 99916 / 99436 99926 / 99436 99936
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