Elkenawy Amr, Judvaitis Janis
Institute of Electronics and Computer Science, 14 Dzerbenes St., LV-1006 Riga, Latvia.
Sensors (Basel). 2022 May 30;22(11):4154. doi: 10.3390/s22114154.
Performing a good-quality indoor localization of a mobile target is a challenging task, which can be affected by many factors such as radio wave behavior, the nature of the experimental environment, and available infrastructure. (1) Background: An indoor localization experiment using an Internet of Things (IoT) wireless sensor network (WSN) testbed is performed, in order to study the influence of transmission power level on the quality of received signals, and consequently, the estimated target positional coordinates. (2) Methods: A received signal strength indicator (RSSI) range-based localization system using a geometrical constrained weighted least squares (WLS) estimator multilateration technique is selected to validate the influence of the transmission power level on the performance of the localization algorithm. (3) Results: Fair localization quality was obtained at the highest transmission power level instead of the proposed transmission power level. (4) Conclusion: Additional factors are discussed to fully represent the required operational transmission power for a better localization quality, along with suggested improvements of the infrastructure configuration as a future work.
对移动目标进行高质量的室内定位是一项具有挑战性的任务,它会受到许多因素的影响,如无线电波行为、实验环境的性质以及可用基础设施。(1)背景:进行了一项使用物联网(IoT)无线传感器网络(WSN)测试平台的室内定位实验,以研究发射功率水平对接收信号质量的影响,进而研究对估计目标位置坐标的影响。(2)方法:选择一种基于接收信号强度指示(RSSI)范围、使用几何约束加权最小二乘(WLS)估计器多边测量技术的定位系统,以验证发射功率水平对定位算法性能的影响。(3)结果:在最高发射功率水平而非提议的发射功率水平下获得了较好的定位质量。(4)结论:讨论了其他因素,以充分说明为实现更好的定位质量所需的工作发射功率,同时提出了作为未来工作改进基础设施配置的建议。