Thursday, 7 December 2017

Shopper Fulfillment Expectations Up, Satisfaction Still Elusive in Study

Zebra Technologies' "2017 Global Shopper Study," which analyzes shopper satisfaction and retail technology trends, found that satisfaction at physical stores—while higher than it was ten years ago—is still low (little more than half). What's more, at least half of all shoppers said they believe they are better connected to product information via their smartphones than store associates are.

According to Zebra, 44 percent of surveyed shoppers said they are dissatisfied with the availability of employees or the level of customer service they receive in stores—approximately 10 percentage points higher than in the past. In addition, online shoppers indicated dissatisfaction in customer service and returns at a rate of about 54 percent.

Zebra's 10th annual study surveyed nearly 7,500 shoppers from North America, Latin America, the Asia-Pacific region, Europe and the Middle East. These individuals were interviewed in September 2017 by online research partner Qualtrics.
The goal, explains Tom Moore, Zebra's industry lead for the retail and hospitality industry, was to better understand retailers' impact on in-store shopper satisfaction, as well as what shopper pain points are, how consumers use mobile technologies and their views regarding emerging technologies.

"This gives us an external point of view to align our investments and messaging with," Moore says. The survey was targeted to benefit retailers, as well as Zebra, in planning solutions to meet the needs of consumers. "We can tie the survey information back to what we hear from retailers," he states, adding that retailers typically seek solutions to the very problems consumers most often indicated facing during the survey.

Since it was first released 10 years ago, Moore reports, the survey has been measuring most of the same metrics. "In that way," he says, "we are seeing what the journey has been over the past 10 years" for the retailer in-store market. Some improvement has been notable, Moore notes, such as the rate of dissatisfaction.

Overall, consumers in the past have expressed 63 percent dissatisfaction with their in-store shopping experience when it came to customer service, compared to the current 44 percent. "But there are still opportunities out there for improvement," Moore says. The survey, in fact, found that half of all respondents felt positive about shopping at stores, and believed technology is helping retailers improve the experience.

Throughout the decade during which the study has been conducted, several obstacles to retail in-store sales have continued to exist. This year, for instance, half of all millennial shoppers have proven to be better connected via mobile phone access than retail associates at stores. In fact, among all age groups, about 44 percent said they were better connected than workers, which is up from about 34 percent in 2015 and 32 percent the year prior.

Auburn RFID Lab Expands to Avionics With Delta Gift

Auburn University's RFID Lab is building a bay dedicated to aviation-based RFID technology with a gift provided by Delta Air Lines, the Delta Air Lines Foundation and the Jacobson Family Foundation, for that purpose. The airline this week announced its $2 million gift to Auburn for the Delta Air Lines Aviation Sensor ID Bay.

The new research bay dedicated to aviation is one step in what the lab expects to be a broadening of its scope beyond retail-based RFID. Altogether, Delta provided $6 million to the school, with $4 million dedicated to Auburn's Aviation program, in addition to the $2 million dedicated to the RFID Lab.

With the gift, says Justin Patton, the RFID Lab's director, the lab has already begun building the bay within the existing facility, which includes a simulated aircraft cabin containing 42 aircraft seats, as well as a baggage-loading area and service hangar space for tool tracking. There will also be an area that will simulate an aircraft parts assembly line. The money will be used to not only build out the lab bay, but also fund student and faculty research on projects related to RFID tags in avionics.

The lab has already been working with the aviation industry for the past year and a half, Patton says, to develop data-certification testing program for flyable parts. That program, known as the Data Conformance Program, is intended to help stakeholders from original equipment manufacturers (OEMs), aircraft companies and airlines follow a specific protocol for writing and reading data on high-memory tags.

What are the new discoveries of the artificial intelligence revolution from Google, Microsoft, and Intel?

2017, known as the first year of "AI", as an important driving force for the fourth industrial revolution, AI (Artificial Intelligence) is changing many industries. From industrial robots, service robots, pilotless, intelligent medical treatment to AR/VR, artificial intelligence has been ubiquitous.

A large number of AI technologies have been applied in different industries. What are the new breakthroughs and developments in A graphics parsing, algorithm and application research in the past year? Google, Microsoft, Intel and Baidu are all well-known high-tech enterprises in the world. With the growing maturity of AI technology, what are these high-tech companies most worried about?

Medical AI
"The disease status quo, medicine is changing. With the development of artificial intelligence and machine learning in-depth, accurate personalized medical care is expected to become a reality. Vice president of Google Greater China president Shi Bo Meng points out that AI will play a very important role in public health care, disease testing done by Google for diabetic retinopathy. The change of patient's vascular data to help doctors understand the pathological changes, timely treatment to avoid deterioration of blindness. The results of the experiment prove that diagnosis and treatment are very effective, AND can help doctors save 95% of the time, the diagnostic accuracy of up to 99%. Thus, the results are very exciting.

Artificial intelligence has a great potential in the field of health care. In addition to improve the level of diagnosis and treatment of various diseases, AI can also be applied to optimize the medical process, through careful analysis of data, to reduce the cost and results in improving nursing quality at the same time. Based on the latest testing or monitoring data to help doctors and patients, the drug of choice a proper dose, to assist radiologists to identify diseases such as cancer, surgery and medical literature analysis suggested that will yield the best results.


In the field of AI health applications, IBM started very early, and some of them through the medical center, in the clinical diagnosis and treatment of rare tumor classification and collection of professional knowledge and clinical experience, and these data will be processed and operation applied to various aspects of personalized therapy, patient involvement, imaging diagnosis, drug development, etc.

In the view of most doctors and experts in the AI medical field, artificial intelligence should be a good "assistant" to a doctor rather than a medical decision maker. IBM global vice president, Greater China chief technology officer Shen Xiaowei IBM, Dean Chinese Research Institute at the forum to share that IBM dozens of communities hospital in the southern city of China, constructed the AI doctor assistant system for chronic disease diagnosis, help doctors do diabetes and other diseases, which has made very good progress.