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More mobile not so well-connected yet: Users' mobility inference model and 6 month field study

机译:更多移动&不如此良好连接:用户的移动推理模型和6个月的实地研究

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Smartphones assist their users throughout daily life activities. There is much emphasis on the user's mobility support in the research at large. However, we have a weak understanding about users mobility (are they really moving?) and how well connected are they across their typical day. First, to infer mobility state of users, we derived and evaluated the accuracy of a machine learning-based model, i.e., MobilitySensor, which is based solely on smartphone built-in sensors. It is a tree-based model, defined for each network operator and its average accuracy reaches 91%. Next, we leverage our algorithm to explore the mobility of 34 users served by 3 different Swiss operators (OP) during a period of six months, correlating it with their connectivity. The user study results showed that users are statistically significantly more mobile than we observed in the past (21±7% of the time, i.e., up to 4.3h vs. 13±12%, i.e., 2.7h in 2011) and when they are mobile, 4G network is available to them 38±12% of the time. Furthermore, when mobile, depending on their operator, they may be provided with up to around 10% of the time with 2.5G connectivity (for OP1 and OP2 vs. only 4% OP3), or provided mainly with 3G (49% for OP1 vs. 34% for OP3). Based on the results we provide a set of design implications for application providers, users and operators alike, all striving to improve the mobile users' quality of experience (QoE).
机译:智能手机在日常生活活动中帮助他们的用户。大大重视用户在大型研究中的移动性支持。但是,我们对用户移动性的理解较弱(他们真的在移动?)以及它们在典型的一天中的联系方式。首先,要推断用户的移动状态,我们得出并评估了基于机器学习的模型的准确性,即MobilitySensor,即仅基于智能手机内置传感器。它是一种基于树的模型,为每个网络运营商定义,其平均精度达到91%。接下来,我们利用我们的算法在六个月的时间内探讨34个用户服务的34个用户(OP)所服务的移动性,将其与它们的连接相关联。用户学习结果表明,用户在过去观察到的统计学上显着更大(21±7%的时间,即高达4.3h与13±12%,即2011年的2.7h)和它们是移动的,4G网络可供他们使用38±12%的时间。此外,当移动符合其操作员时,它们可以提供高达约10%的时间,其中2.5g连接(对于OP1和OP2,仅为4%OP3),或主要提供3G(OP1 49% op3的vs. 34%)。根据结果​​,我们为应用程序提供商,用户和运营商提供了一套设计含义,所有人都努力提高移动用户的体验质量(QoE)。

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