ITU-R REPORT SM 2022-1-2004 The effect on digital communications systems of interference from other modulation schemes《其它调制方案对数字通信系统的干扰影响》.pdf
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1、 Rep. ITU-R SM.2022-1 1 REPORT ITU-R SM.2022-1 The effect on digital communications systems of interference from other modulation schemes (Question ITU-R 202/1) (2000-2004) TABLE OF CONTENTS PART A Theoretical investigation Page 1 Introduction 3 2 Project work objectives and plan 4 2.1 Project work
2、objectives. 4 2.2 Project work test plan . 4 2.3 Additional project work developed during the project . 5 3 SPW simulation methodology 5 3.1 SPW simulation set up and designs 5 3.1.1 SPW design wanted fixed link of 4-PSK modulation format with a receiver. 6 3.1.2 SPW design wanted fixed link of 16-Q
3、AM-modulation format with a receiver 8 3.1.3 SPW designs of FSK modulation format with a receiver 10 3.2 SER or BER measurement using Monte Carlo method 11 3.2.1 Selecting a method for an evaluation of BER/SER performance of fixed links. 12 3.2.2 BER/SER measurement uncertainty. . 12 3.3 Validation
4、of SPW simulation designs for wanted fixed links of 4-PSK, 16-QAM and FSK modulation schemes. 12 3.3.1 Methodology 13 4 Results 14 4.1 BER/SER performance of wanted fixed links of 4-PSK, 16-QAM and FSK modulation formats. 14 4.2 PSD plots of wanted and unwanted sources . 20 4.3 Eye and scatter plots
5、 for 4-PSK and 16-QAM fixed links with interference and noise. 23 2 Rep. ITU-R SM.2022-1 Page 5 Summary and conclusions 31 5.1 Improvement obtained in frequency assignment and planning by interference limited environment relative to noise limited environment 31 5.1.1 Wanted fixed link of 4-PSK modul
6、ation format 31 5.1.2 Wanted fixed link of 16-QAM modulation format 31 5.1.3 Wanted fixed link of FSK modulation format. 31 PART B Measurements Page 1 Introduction 32 2 An introduction to available detectors 33 2.1 Characteristics of the International Special Commitee on Radio Interference (CISPR) q
7、uasi-peak (QP) detector 33 2.2 Characteristics of other detectors 33 2.3 Amplitude probability distribution (APD) 34 3 Digital communication services . 35 3.1 General 35 3.2 System characteristics. 35 4 Weighting of disturbance to digital communication systems. 35 4.1 Measurement principle . 35 4.2
8、Interference signals. 36 4.3 Experimental example 1: digital video broadcasting (DVB-C) . 37 4.4 Experimental example 2: digital audio broadcasting (DAB) . 38 5 Conclusion 39 References and Bibliography. 40 Rep. ITU-R SM.2022-1 3 PART C Simulation method for identification of interference source Pag
9、e 1 Introduction 40 2 Simulation method 40 2.1 Simulation set-up 41 2.2 BER calculation using improved importance sampling (IIS) method 42 3 Simulation results . 42 3.1 BER performance . 42 3.2 Probability density of Eb/N050 4 Conclusions 56 PART A Theoretical investigation 1 Introduction This Part
10、A considers the situation where a digital fixed link receives interference from radio (natural) noise plus an unwanted interferer of power set at 6 dB above the natural noise. Current fixed link assignment strategies are commonly noise limited. This means that the minimum receiver signal level under
11、 fading is set to a particular level with respect to the system noise floor and the ambient noise. The assignments are then planned such that the maximum level of an unwanted signal is set by a protection ratio that results in the unwanted signals typically being approximately 6 dB below the noise.
12、This approach is relatively safe and easy to define, but suffers from being sub-optimum. It is advantageous in maximizing the number of links that can be accommodated in a given band and geographical area to arrange that systems are interference limited. In other words, that the unwanted signals, no
13、t natural noise, set the environmental noise floor. Such a strategy brings forth the need to assess the performance of fixed-link receivers in the presence of unwanted signals of other modulation schemes as well as Gaussian noise. This study to considered three types of digital fixed link modulation
14、 schemes of frequency-shift keying (FSK), 4-level phase-shift keying (4-PSK) and 16-level quadrature amplitude modulation (16-QAM) affected by noise and interference from one source of dissimilar modulation scheme, FSK, 4-PSK 8-PSK and 16-QAM. The theoretical investigation was carried out using the
15、signal processing work system (SPW). 4 Rep. ITU-R SM.2022-1 The Report concludes, through analysis of results of computer simulations, that planning and assignment of fixed-links in an interference limited environment (i.e., interference 6 dB above noise) will provide closer physical packing of fixe
16、d-link assignments with increased efficiency. 2 Project work objectives and plan It was intention of this project work to carry out theoretical study according to the agreed objectives and work plan with the sponsor, but additional work was added during the investigative study. 2.1 Project work obje
17、ctives The objective of the study was to simulate the effect on a typical microwave link of unwanted energy consists of both noise and interference (of other modulation schemes) with their signal levels in a defined proportion. Then through analysis assess the potential of spectrum planning and assi
18、gnment strategies based on interference limited scenarios that are more likely to be more efficient. For the purpose of this project work a symbol error ratio (SER), or a bit error ratio (BER), was measured/calculated for a various values of signal to (noise + interference) ratios, S/(N + I), where
19、noise = additive white Gaussian noise (AWGN) and interference = other specified modulation schemes. In all cases, unless specified, the interference level was chosen to be 6 dB above the noise. 2.2 Project work test plan Table 1 lists the tasks that were to meet the specified objectives in 2.1. TABL
20、E 1 Agreed project test cases Task No. Wanted fixed link modulation scheme of Noise and unwanted fixed link type with their signal levels in varying proportions 1 4-PSK modulation format Noise (AWGN) to SER 1 106 2 4-PSK modulation format Noise + 4-PSK interference level 6 dB above the level of nois
21、e 3 4-PSK modulation format Noise + 16-QAM interference level 6 dB above the level of noise 4 4-PSK modulation format Noise + FSK interference level 6 dB above the level of noise 5 16-QAM modulation format Noise (AWGN) to SER 1 106 6 16-QAM modulation format Noise + 4-PSK interference level 6 dB abo
22、ve the level of noise 7 16-QAM modulation format Noise + 6-QAM interference level 6 dB above the noise 8 16-QAM modulation format Noise + FSK interference level 6 dB above the level of noise 9 FSK modulation format Noise (AWGN) to SER 1 10610 FSK modulation format Noise + FSK interference level = le
23、vel of noise 11 Noise + FSK interference level 6 dB above the level of noise 12 Noise + 4-PSK interference level 6 dB above the level of noise 13 Noise + 8-PSK interference level 6 dB above the level of noise 14 Noise + 16-QAM interference level 6 dB above the level of noise Rep. ITU-R SM.2022-1 5 2
24、.3 Additional project work developed during the project During the project work, it became necessary to know two things. One is how wanted fixed links of 4-PSK, 16-QAM and FSK modulation formats are affected by unwanted fixed link of FSK modulation format with its varying modulation index. The other
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