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May 16, 2026Doklady BGUIR0 citationsOpen Access

Analysis of Adaptive Modulation and Coding Schemes in DVB-T2 Broadcasting Systems to Improve Signal Stability, Transmission Efficiency and Overall Quality of Service

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OAOlarewaju Peter Ayeoribe

Key Points

  • To evaluate the performance of adaptive modulation and coding schemes in DVB-T2 broadcasting systems for enhancing signal reliability and transmission efficiency.
  • Assess performance of QPSK, 16QAM, 64QAM, 256QAM modulation schemes with LDPC codes at rates of 1/2–9/10.
  • Simulate performance in channels with additive white Gaussian noise and multipath fading.
  • Measure bit error rate and channel throughput under varying signal-to-noise ratios.
  • 1/2 rate QPSK achieves a bit error rate of less than 10 –5 at 5 dB SNR.
  • 9/10 rate 256QAM achieves a bit error rate of less than 10 –6 at 25 dB SNR.
  • Channel throughput increases from 1.0 bps/Hz for QPSK to 6.7 bps/Hz for 256QAM under high SNR conditions.

Abstract

The performance of adaptive modulation and coding in second-generation digital broadcasting systems (DVB-T2) is investigated in terms of the reliability of the transmitted signal, the efficiency of channel bandwidth utilization, and the quality of the supported service. The performance of quadrature phase-shift keying (QPSK) modulation schemes (16QAM, 64QAM, 256QAM) using low-density parity-check (LDPC) codes with rates of 1/2–9/10 is assessed in the context of their application to provide high-quality digital terrestrial television broadcasting based on adaptive modulation and coding methods. The simulation results yielded bit error char acteristics for various modulation schemes using LDPC codes at different rates in channels with additive white Gaussian noise and multipath fading simultaneously. It was found that simpler modulation schemes, such as 1/2 rate QPSK, can provide a bit error rate of less than 10 –5 at a signal-to-noise ratio of 5 dB, while more complex ones, such as 9/10 rate 256QAM, require a signal-to-noise ratio of 25 dB to provide a bit error rate of less than 10 –6 . An improvement in channel throughput was noted from 1.0 bps/Hz for QPSK modulation to 6.7 bps/Hz for 256QAM under high signal-to-noise ratio conditions.

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Cite This Study

Olarewaju Peter Ayeoribe (2026) studied this question.

synapsesocial.com/papers/6a0808ffa487c87a6a40b084https://doi.org/10.35596/1729-7648-2026-24-2-46-54
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