An Energy-Efficient FPGA-Based Real-Time IMDD OFDM-PON Enabled by an Efficient FFT
Abstract
1. Introduction
2. Operation Principle
2.1. FPGA Power Consumption Model for OFDM-PON
2.2. Block Memory-Efficient Architecture for Half-Parallel FFT
3. Energy-Efficient Scheme for the Half-Parallel 64-Point FFT
3.1. Overall Architecture of the FPGA-Based Real-Time IMDD OFDM-PON Energy-Efficient Half Parallel 64-Point FFT Design
3.1.1. Stage 0 Processing Module: Input Reordering
3.1.2. Final Processing Module: Output Combination
3.2. System-Level Energy-Efficient Solution for FPGA-Based Real-Time IMDD OFDM-PON Receiver
4. Experimental Setup
5. Experimental Results
5.1. Real-Time Experimental Verification of the BER Performance of the Proposed FFT
5.1.1. Selection of BER Performance Indicator and FFT Bit Resolution
5.1.2. Comparative BER Performance of Spiral FFT and Proposed FFT
5.1.3. BER Performance of the Proposed FFT with Adaptive Modulation
5.2. Real-Time Experimental Verification of the Energy-Efficient Effect of Proposed FFT
5.3. Real-Time Experimental Verification of the Energy-Efficient Effect of the Overall Energy-Efficient Scheme
6. Conclusions
Author Contributions
Funding
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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| Parameters | Value |
|---|---|
| 2.08 × 10−5 W/MHz | |
| 2.63 × 10−5 W/MHz | |
| 7.69 × 10−5 W/MHz | |
| 4.42 × 10−3 W/MHz | |
| 9.73 × 10−4 W/MHz |
| Parameters | Value |
|---|---|
| FFT/IFFT points | 64 |
| Data-carrying subcarriers | From 2 to 28 |
| Modulation format | 2/4/8/16/32/64-QAM |
| ADC/DAC resolution | 10/12-bit |
| ADC& DAC sample rate | 4 GS/s |
| OFDM frame CP | 16 samples (4 ns) |
| PRBS | 215 − 1 |
| Transmitter output power | +7.75 dBm |
| DFB wavelength | 1549.98 nm |
| DFB modulation bandwidth | 2.7 GHz |
| DFB bias current | 45 mA |
| DFB driving voltage | 2 Vpp |
| PIN detector bandwidth | 40 MHz~3 GHz |
| PIN responsivity | 0.9 mA/mW |
| Receive Optical Power | Stage Index | |||||
|---|---|---|---|---|---|---|
| 1 | 2 | 3 | 4 | 5 | 6 | |
| −5 dBm | 11 | 12 | 11 | 11 | 11 | 11 |
| −9 dBm | 11 | 12 | 10 | 11 | 10 | 11 |
| −13 dBm | 11 | 12 | 10 | 10 | 10 | 10 |
| −17 dBm | 11 | 12 | 9 | 10 | 9 | 10 |
| −21 dBm | 11 | 12 | 8 | 9 | 8 | 9 |
| Received Optical Power | FF/LUT/LUTRAM/BRAM/DSP |
|---|---|
| −5 dBm | 10,816/9855/0/0/0 |
| −9 dBm | 10,424/9639/0/0/0 |
| −13 dBm | 9896/9231/0/0/0 |
| −17 dBm | 9482/8949/0/0/0 |
| −21 dBm | 8602/7789/0/0/0 |
| Quantization Bits | FF/LUT/LUTRAM/BRAM/DSP |
|---|---|
| 16 | 19,813/12,855/2840/96/172 |
| 15 | 14,368/11,876/2020/48/172 |
| 14 | 13,385/11,203/2007/48/172 |
| 13 | 12,402/10,567/1997/48/172 |
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Share and Cite
Zheng, Z.; Chen, T.; Qu, Y.; Xu, Z.; Chi, Y.; Wang, X.; Zhang, J. An Energy-Efficient FPGA-Based Real-Time IMDD OFDM-PON Enabled by an Efficient FFT. Sensors 2025, 25, 7302. https://doi.org/10.3390/s25237302
Zheng Z, Chen T, Qu Y, Xu Z, Chi Y, Wang X, Zhang J. An Energy-Efficient FPGA-Based Real-Time IMDD OFDM-PON Enabled by an Efficient FFT. Sensors. 2025; 25(23):7302. https://doi.org/10.3390/s25237302
Chicago/Turabian StyleZheng, Zhe, Tianyang Chen, Yuanzhe Qu, Zhengjun Xu, Yingying Chi, Xin Wang, and Junjie Zhang. 2025. "An Energy-Efficient FPGA-Based Real-Time IMDD OFDM-PON Enabled by an Efficient FFT" Sensors 25, no. 23: 7302. https://doi.org/10.3390/s25237302
APA StyleZheng, Z., Chen, T., Qu, Y., Xu, Z., Chi, Y., Wang, X., & Zhang, J. (2025). An Energy-Efficient FPGA-Based Real-Time IMDD OFDM-PON Enabled by an Efficient FFT. Sensors, 25(23), 7302. https://doi.org/10.3390/s25237302

