Reversible logic circuits can contribute to addressing environmental issues in several ways, primarily by reducing energy consumption and heat dissipation. Reversible logic circuits involve a computer model with forward and rear deterministic properties. The theoretical properties of these models are attractive and have applications of inversion and bidirectional registration. The presented work examines how to examine reversible arithmetic logic units (ALU) processing frameworks can be executed with a low complexity structure. By reducing the complexity of the reversible logics several environmental characteristics such as energy efficiency, low power consumption, heat management, green computing has achieved with significant margins. The simulation results demonstrate efficient implementation of the proposed reversible logics with various combination circuits such as adder, sub-tractor, multiplexer, multiplier, comparator, and memory elements. Xilinx software was used to design the layouts and simulate VHDL text benches.

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Optimization of Environmental Sustainability Using Reversible Logic Circuits

  • Ravi Ranjan,
  • Mohit Kumar Sharma

摘要

Reversible logic circuits can contribute to addressing environmental issues in several ways, primarily by reducing energy consumption and heat dissipation. Reversible logic circuits involve a computer model with forward and rear deterministic properties. The theoretical properties of these models are attractive and have applications of inversion and bidirectional registration. The presented work examines how to examine reversible arithmetic logic units (ALU) processing frameworks can be executed with a low complexity structure. By reducing the complexity of the reversible logics several environmental characteristics such as energy efficiency, low power consumption, heat management, green computing has achieved with significant margins. The simulation results demonstrate efficient implementation of the proposed reversible logics with various combination circuits such as adder, sub-tractor, multiplexer, multiplier, comparator, and memory elements. Xilinx software was used to design the layouts and simulate VHDL text benches.