A shopping mall is a place where most people from all walks of life will get their daily needs ranging from food products, apparel, toiletries; gardening tools electrical appliances, and others. The numbers of small and large shopping malls keep on increasing over the years throughout the world due
Smart Trolley for Marts based on Computer Vision
A shopping mall is a place where most people from all walks of life will get their daily needs ranging from food products, apparel, toiletries; gardening tools electrical appliances, and others. The numbers of small and large shopping malls keep on increasing over the years throughout the world due to the demand of the public. Thus, the level of advancement of the shopping mall system and infrastructure also varies. There are still plenty of spaces for improvement in terms of providing a quality shopping experience to the consumers. Consumers often face problems and inconvenience when shopping [Nowadays, in the mall for purchasing a variety of items it requires a trolley. Every time customer has to pull the trolley from rack to rack for collecting items. It needs a lot of power to be done when shopping. But, trolleys in supermarkets were needed. A lot of goods in the shopping cart would be to push or pull, so the customers will limit the activity of the hand. When focused on pushing the trolley, buyers will often miss a lot of goods sold in supermarkets and only buy the imported goods only, and of course, this could harm the supermarket company. The technology represents to retailer’s opportunity to reduce costs and to improve services, allowing to attend clients quickly, precisely, and supplying personalized services. All around the world, robots are entering the shopping centers, attesting that robotic technology is gaining ground. The rationale for this choice lies in the fact that retail shops need to offer trendy yet low-cost substitutes to e-commerce, reducing the operating costs of personnel management. In order to give the best services, it had been needing a trolley that can follow automatically human movement. The direction could be detected using transducers, sensors, or another detector.
An automatic mobile trolley was a prototype of a wheeled robot that serves as a trolley or shopping cart. This paper proposed an automatic mobile trolley using ultrasonic sensors. It can follow human movement automatically. It did not need to be encouraged or withdrawn. It would make an easier shopping for people.
In the future, we can pay the bill amount online by using the smart phone by scanning the QR code of that particular supermarket. And get the soft copy of the bill receipt to check out from the super market in this trolly all the thing added automatically with proper details so that would be very easy to people do shopping.
TASK 1:
Project Initiation and Planning: ASR’s expectations regarding the project kick-off and management.
TASK 2:
System, Interface, and Data Conversion Design:
ASR’s expectations regarding the developing and detailing of the plans for designing the System to meet the needs of ASR. This includes the design of the interfaces and data conversion.
TASK 3:
System Development / Configuration:
ASR’s expectations regarding the development and/or configuration of the System to meet ASR’s needs through execution of the designs created in Task 2. This includes the development of the interfaces and data conversion.
TASK 4:
System Testing:
ASR’s expectations regarding the testing of the System developed/configured in Task 3 to ensure that it meets the needs of ASR.
TASK 5
Project Training:
ASR’s expectations regarding the training of ASR staff in using the new System.
TASK6:
Deployment:
ASR’s expectations regarding the deploying of the new System into production.
TASK 7:
Implementation Closeout: ASR’s expectations regarding the process of concluding implementation.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Raspberry pi | Equipment | 2 | 14000 | 28000 |
| Mecanum wheel | Equipment | 4 | 2200 | 8800 |
| Geared Motor | Equipment | 4 | 600 | 2400 |
| Motor driver | Equipment | 1 | 700 | 700 |
| Node MCU | Equipment | 1 | 2000 | 2000 |
| HC-05 Bluetooth Module | Equipment | 1 | 600 | 600 |
| Pi Camera | Equipment | 5 | 3300 | 16500 |
| Battery | Equipment | 1 | 4000 | 4000 |
| Wiring/installation material | Miscellaneous | 1 | 10000 | 10000 |
| Total in (Rs) | 73000 |
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