| Literature DB >> 32722324 |
Zhongliang Deng1, Hanhua Wang1, Xinyu Zheng1, Lu Yin1.
Abstract
The fifth generation (5G) cellular communication system is designed to support Time Difference of Arrival (TDOA), Round-Trip Time (RTT), and Direction of Arrival (DOA) measurements for indoor positioning. To mitigate the positioning error caused by non-line-of-sight (NLOS), existing base station selection methods identify channel conditions and only use line-of-sight (LOS) signals for positioning. However, different selected base station combination would lead to a different geometric dilution of precision (GDOP), base station selection based only on channel condition is not fully applicable for the hybrid positioning. This paper derives the GDOP for the hybrid TDOA, RTT, and DOA positioning, and proposes a GDOP-assisted base station selection method, which is based on both channel conditions and GDOP value changes. The simulation shows that using the proposed base station selection method could lead to higher positioning accuracy than base station selection based only on channel condition. In the simulation, in the side region of the scenario, where the change of selected base station combination causes a notable increment in GDOP value, the positioning accuracy improvement caused by the proposed method is greater than that in the center region.Entities:
Keywords: 5G system; base station selection; geometric dilution of precision; hybrid positioning
Year: 2020 PMID: 32722324 PMCID: PMC7435970 DOI: 10.3390/s20154132
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
List of symbols.
| Symbol | Meaning |
|---|---|
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| DOA ranging result |
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| position of BS |
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| Variance of DOA measurement error |
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| Variance of RTT measurement error |
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| Variance of TDOA measurement error |
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| Real distance between UE to BS |
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| Distance difference between |
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| Real distance from projection of UE to BS |
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| Vector of measurement errors |
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| DOA measurement error of signal from UE to BS 1 |
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| Measurement error, refers to all measurement errors including |
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| TDOA measurement error between signals from BS |
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| RTT measurement error of UE to BS 1 |
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| Positioning error on |
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| Positioning error on |
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| Functional relationship between UE positioning result and measurement error, refers to all of |
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| Functional relationship between UE positioning result and DOA measurement error |
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| Functional relationship between UE positioning result and RTT measurement error |
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| Functional relationship between UE positioning result and TDOA measurement error |
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| The real azimuth angle between UE to BS 1 |
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| The TDOA ranging result |
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| The RTT ranging result |
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| The position of UE |
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| The error of UE position estimation result |
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| UE’s real location |
|
| Position estimation result |
Figure 1The system model of fifth generation (5G) system indoor positioning, base station being denoted by “BS” and user equipment being denoted by “UE”.
Figure 2The three-dimension Cartesian coordinate for US positioning.
Figure 3The flowchart of geometric dilution of precision (GDOP)-assisted BS selection method.
Figure 4The distribution of collected GDOP decrement rates and positioning error changes in simulation. (a) the distribution of collected data. (b) the linear regression result.
Figure 5Simulation Scenario with 12 base stations (BSs).
Figure 6GDOP of the hybrid positioning when all BSs are used for positioning. The red dots indicate BSs.
Figure 7The GDOP distribution of the hybrid positioning when one of the BSs is not selected for positioning. (a) The GDOP distribution when BS 1 is not selected. (b) The GDOP distribution when BS 2 is not selected. (c) The GDOP distribution when BS 3 is not selected.
Figure 8The GDOP distribution of the hybrid positioning when BS 1 and another BS are not selected for positioning. (a) the GDOP distribution when BS 1 and BS 2 are not selected; (b) the GDOP distribution when BS 1 and BS 3 are not selected; (c) the GDOP distribution when BS 1 and BS 7 are not selected; (d) the GDOP distribution when BS 1 and BS 8 are not selected.
Figure 9The cumulative distribution functions (CDFs) of GDOP value in BS 1 serving area with different BS selection combinations. (a) The overall CDF curves; (b) enlarged view of CDF curves when GDOP is 0.5 to 5 in (a).
Figure 10The CDF of positioning error with different BS selection methods.
Figure 11The CDF of positioning error with different BS selection methods in different regions. (a) The CDF in the side region. (b) The CDF in the center region. (c) The CDF in rest of the simulation scenario.