{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2023,10,6]],"date-time":"2023-10-06T21:49:05Z","timestamp":1696628945799},"reference-count":24,"publisher":"Wiley","issue":"9","license":[{"start":{"date-parts":[[2012,8,29]],"date-time":"2012-08-29T00:00:00Z","timestamp":1346198400000},"content-version":"vor","delay-in-days":0,"URL":"https:\/\/2.zoppoz.workers.dev:443\/http\/onlinelibrary.wiley.com\/termsAndConditions#vor"}],"content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":["Int J Communication"],"published-print":{"date-parts":[[2012,9]]},"abstract":"<jats:title>SUMMARY<\/jats:title><jats:p>Experimentation infrastructures for wireless sensor networks (WSNs) have been widely adopted over the past decade for high\u2010fidelity validation and rapid prototyping of applications and for discovering and modeling phenomena that have led to improvements in analysis and simulation capabilities. Nonetheless, the community is still looking for more heterogeneous WSN testbeds for purposes such as federation, experiment regression analysis, and improved testbed availability. In addition, most existing WSN testbeds lack robustness and predictability in the presence of failures, and they do not provide user\u2010friendly support for scientific experimentation (e.g., quick repetition of experiments). We develop the <jats:italic>NetEye<\/jats:italic> testbed as a high\u2010fidelity, robust WSN experimentation infrastructure that provides the ease of scientific experimentation. Consisting of 130 TelosB motes with IEEE 802.15.4 radios and 15 Linux laptops with IEEE 802.11a\/b\/g radios, NetEye provides a WSN deployment that enables high\u2010fidelity experimentation with single\u2010hop as well as multihop WSN networking, and the lab\u2010scale deployment mimics network properties of building\u2010scale and outdoor WSN deployments. Building upon the authors\u2019 experience in developing and using WSN testbeds in the past years, NetEye also has enhanced features that enables easy, robust scientific experimentation. In particular, NetEye provides users with a simple, powerful web portal, which streamlines users\u2019 experience in the whole lifecycle of scientific experimentation (e.g., experiment scheduling, status monitoring, and data exfiltration). NetEye employs a stable, fault\u2010tolerant state machine to improve the robustness of the testbed in the presence of failures. NetEye also develops a health monitoring service <jats:italic>NetEye Doctor<\/jats:italic> that monitors hardware and software status; the real\u2010time health monitoring information about the testbed is seamlessly integrated with the lifecycle of experiment scheduling, experiment status monitoring, and experiment data analysis for both robust experimentation and for informed experiment analysis. To address the log\u2010data congestion problem in long\u2010running, large scale experiments, NetEye employs a TDMA (Time Division Multiple Access) mechanism to ensure reliability in exfiltrating experiment data to users. To facilitate quick, repetitive scientific experimentation, NetEye also speeds up the mote programming cycle through fast job status transition and multi\u2010thread\u2010based mote programming. NetEye has been successfully running for over 3.5\u2009years, and it has been integrated with the federated WSN experimental infrastructure <jats:italic>KanseiGenie<\/jats:italic>. NetEye is widely used by researchers from USA and Asia, and more than 10 experiments are executed through NetEye per day on average. Copyright \u00a9 2012 John Wiley &amp; Sons, Ltd.<\/jats:p>","DOI":"10.1002\/dac.2381","type":"journal-article","created":{"date-parts":[[2012,8,29]],"date-time":"2012-08-29T09:02:55Z","timestamp":1346230975000},"page":"1213-1229","source":"Crossref","is-referenced-by-count":26,"title":["NetEye: a user\u2010centered wireless sensor network testbed for high\u2010fidelity, robust experimentation"],"prefix":"10.1002","volume":"25","author":[{"given":"Xi","family":"Ju","sequence":"first","affiliation":[{"name":"Computer Science Department Wayne State University  Detroit Michigan USA"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Hongwei","family":"Zhang","sequence":"additional","affiliation":[{"name":"Computer Science Department Wayne State University  Detroit Michigan USA"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Divya","family":"Sakamuri","sequence":"additional","affiliation":[{"name":"Ford Motor Company  Dearborn Michigan USA"}],"role":[{"role":"author","vocabulary":"crossref"}]}],"member":"311","published-online":{"date-parts":[[2012,8,29]]},"reference":[{"key":"e_1_2_7_2_1","doi-asserted-by":"crossref","unstructured":"JuX ZhangH ZengW SridharanM LiJ AroraA RamnathR XinY.LENS: Resource specification for wireless sensor network experimentation infrastructures. 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