Sample program that can send the recognition data from HVC-P2 to Fujitsu IoT Platform using REST (HTTP)

Dependencies:   AsciiFont GR-PEACH_video GraphicsFramework LCD_shield_config R_BSP USBHost_custom easy-connect-gr-peach mbed-http picojson

Information

Here are both English and Japanese description. First, English description is shown followed by Japanese one. 本ページには英語版と日本語版の説明があります。まず英語版、続いて日本語版の説明となります。

Overview

This sample program shows how to send the cognitive data gathered by Omron HVC-P2 (Human Vision Components B5T-007001) to IoT Platform managed by FUJITSU ( http://jp.fujitsu.com/solutions/cloud/k5/function/paas/iot-platform/ ).

Hardware Configuration

/media/uploads/dkato/composition_hvcp2_demo.jpg

When executing this sample program, please configure the above H/W as shown below:
/media/uploads/dkato/composition_hvcp2_demo_2.jpg

Also, please close JP3 of GR-PEACH as follows:
/media/uploads/RyoheiHagimoto/usb.jpg

Application Preconfiguration

Build Procedure

  • Import this sample program onto mbed Compiler
  • In GR-PEACH_HVC-P2_IoTPlatform_http/IoT_Platform/iot_platform.cpp, please replace <ACCESS CODE> with the access code you set up on IoT Platform. For details on how to set up Access Code, please refer to the above Application Setup. Then, please delete the line beginning with #error macro.

Access Code configuration

#define ACCESS_CODE <Access CODE>
#error "You need to replace <Access CODE for your resource> with yours"
  • In GR-PEACH_HVC-P2_IoTPlatform_http/IoT_Platform/iot_platform.cpp, please replace <Base URI>, <Tenant ID> and <Path-to-Resource> below with yours and delete the line beginning with #error macro. For details on <Base URI> and <Tenant ID>, please contact FUJITSU LIMITED. Also, for details on <Path-to-Resource>, please refer to the above Application Setup.

URI configuration

std::string put_uri_base("<Base URI>/v1/<Tenant ID>/<Path-to-Resource>.json");
#error "You need to replace <Base URI>, <Tenant ID> and <Path-to-Resource> with yours"
**snip**
std::string get_uri("<Base URI>/v1/<Tenant ID>/<Path-to-Resource>/_past.json");
#error "You need to replace <Base URI>, <Tenant ID> and <Path-to-Resource> with yours"
  • Compile the program. If compilation is successfully terminated, the binary should be downloaded on your PC.
  • Plug Ethernet cable into GR-PEACH
  • Plug micro-USB cable into the port which lies on the next to RESET button. If GR-PEACH is successfully recognized, it appears as the USB flash disk named mbed as show below:
    /media/uploads/HinoNaka/mbed_drive.png
  • Copy the downloaded binary to mbed drive
  • Press RESET button on GR-PEACH in order to run the program. If it's successfully run, you can see the following message on terminal:
    /media/uploads/HinoNaka/iotplatform_log.png

Format of Data to be sent to IoT Platform

In this program, the cognitive data sent from HVC-P2 is serialized in the following JSON format and send it to IoT Platform:

  • Face detection data

{
    "RecodeType": "HVC-P2(face)"
    "id": <GR-PEACH ID>-<Sensor ID>"
    "FaceRectangle": {
        "Height": xxxx,
        "Left": xxxx,
        "Top": xxxx,
        "Width": xxxx,
    },
    "Gender": "male" or "female",
    "Scores": {
        "Anger": zzz,
        "Hapiness": zzz,
        "Neutral": zzz,
        "Sadness": zzz,
        "Surprise": zzz
    }
}

xxxx: Top-left coordinate, width and height of the rectangle circumscribing the detected face in LCD display coordinate system
zzz: the value indicating the expression estimated from the detected face

//

  • Body detection data

{
    "RecodeType": "HVC-P2(body)"
    "id": <GR-PEACH ID>-<Sensor ID>"
    "BodyRectangle": {
        "Height": xxxx,
        "Left": xxxx,
        "Top": xxxx,
        "Width": xxxx,
    }
}

xxxx: Top-left coordinate, width and height of the rectangle circumscribing the detected body in LCD display coordinate system

概要

本プログラムは、オムロン社製HVC-P2 (Human Vision Components B5T-007001)で収集した各種認識データを、富士通社のIoT Platform ( http://jp.fujitsu.com/solutions/cloud/k5/function/paas/iot-platform/ ) に送信するサンプルプログラムです。

ハードウェア構成

/media/uploads/dkato/composition_hvcp2_demo.jpg

本プログラムを動作させる場合、上記H/Wを下図のように接続してください。 /media/uploads/dkato/composition_hvcp2_demo_2.jpg

また下図に示すGR-PEACHのJP3をショートしてください。 /media/uploads/RyoheiHagimoto/usb.jpg

アプリケーションの事前設定

ビルド手順

  • 本サンプルプログラムをmbed Compilerにインポートします
  • 下記に示すGR-PEACH_HVC-P2_IoTPlatform_http/IoT_Platform/iot_platform.cpp中の<ACCESS CODE> を、IoT Platform上で設定したアクセスコードで上書きしてください。<Access Code>の設定方法につきましては、上述のApplication Setupを参照願います。また #errorマクロで始まる行を削除してください。

Access Code configuration

#define ACCESS_CODE <Access CODE>
#error "You need to replace <Access CODE for your resource> with yours"
  • 下記に示すGR-PEACH_HVC-P2_IoTPlatform_http/IoT_Platform/iot_platform.cpp中の<Base URI><Tenant ID>、および<Path-to-Resource>>を適当な値に置換えるとともに、#errorマクロで始まる行を削除してください。ここで、<Base URI>、 <Tenant ID>の詳細につきましては富士通社へご確認願います。また<Path-to-Resource>>につきましては、Application Setupの項を参照ください。

URI configuration

std::string put_uri_base("<Base URI>/v1/<Tenant ID>/<Path-to-Resource>.json");
#error "You need to replace <Base URI>, <Tenant ID> and <Path-to-Resource> with yours"
(中略)
std::string get_uri("<Base URI>/v1/<Tenant ID>/<Path-to-Resource>/_past.json");
#error "You need to replace <Base URI>, <Tenant ID> and <Path-to-Resource> with yours"
  • プログラムをコンパイルします。コンパイルが正常終了すると、バイナリがお使いのPCにダウンロードされます。
  • GR-PEACHのRJ-45コネクタにEthernetケーブルを差し込んでください。
  • USBA - Micro USBケーブルを、GR-PEACHのRESETボタンの隣に配置されたMicro USBポートに差し込んでください。GR-PEACHが正常に認識されると、下図に示すようにGR-PEACHがmbedという名称のUSBドライブとして認識されます。
    /media/uploads/HinoNaka/mbed_drive.png
  • ダウンロードしたバイナリをmbedドライブにコピーします。
  • RESETボタンを押下してプログラムを実行します。正常に実行された場合、下記に示すメッセージがターミナル上に表示されます。
    /media/uploads/HinoNaka/iotplatform_log.png

送信データフォーマット

本プログラムでは、HVC-P2が収集した認識データを下記のJSONフォーマットにシリアライズし、IoT Platformへ送信します。

  • Face detection data

{
    "RecodeType": "HVC-P2(face)"
    "id": <GR-PEACH ID>-<Sensor ID>"
    "FaceRectangle": {
        "Height": xxxx,
        "Left": xxxx,
        "Top": xxxx,
        "Width": xxxx,
    },
    "Gender": "male" or "female",
    "Scores": {
        "Anger": zzz,
        "Hapiness": zzz,
        "Neutral": zzz,
        "Sadness": zzz,
        "Surprise": zzz
    }
}

xxxx: LCD表示座標系における検出した顔に外接する矩形の左上座標・幅・高さ
zzz: 検出した顔から推定した各種感情を示す数値

//

  • Body detection data

{
    "RecodeType": "HVC-P2(body)"
    "id": <GR-PEACH ID>-<Sensor ID>"
    "BodyRectangle": {
        "Height": xxxx,
        "Left": xxxx,
        "Top": xxxx,
        "Width": xxxx,
    }
}

xxxx: LCD表示座標系における検出した人体に外接する矩形の左上座標・幅・高さ
Committer:
Osamu Nakamura
Date:
Thu Sep 07 18:15:54 2017 +0900
Revision:
0:813a237f1c50
Initial commit

Who changed what in which revision?

UserRevisionLine numberNew contents of line
Osamu Nakamura 0:813a237f1c50 1 #ifndef RECOGNITION_PROCESSING_H
Osamu Nakamura 0:813a237f1c50 2 #define RECOGNITION_PROCESSING_H
Osamu Nakamura 0:813a237f1c50 3
Osamu Nakamura 0:813a237f1c50 4 #include "DisplayBace.h"
Osamu Nakamura 0:813a237f1c50 5 #include "HVCApi.h"
Osamu Nakamura 0:813a237f1c50 6 #include "HVCDef.h"
Osamu Nakamura 0:813a237f1c50 7 #include "HVCExtraUartFunc.h"
Osamu Nakamura 0:813a237f1c50 8
Osamu Nakamura 0:813a237f1c50 9 #define BODY_THRESHOLD_DEFAULT 500 /* Threshold for Human Body Detection */
Osamu Nakamura 0:813a237f1c50 10 #define FACE_THRESHOLD_DEFAULT 500 /* Threshold for Face Detection */
Osamu Nakamura 0:813a237f1c50 11 #define HAND_THRESHOLD_DEFAULT 500 /* Threshold for Hand Detection */
Osamu Nakamura 0:813a237f1c50 12 #define REC_THRESHOLD_DEFAULT 500 /* Threshold for Face Recognition */
Osamu Nakamura 0:813a237f1c50 13
Osamu Nakamura 0:813a237f1c50 14 #define BODY_SIZE_RANGE_MIN_DEFAULT 180 /* Human Body Detection minimum detection size */
Osamu Nakamura 0:813a237f1c50 15 #define BODY_SIZE_RANGE_MAX_DEFAULT 1000 /* Human Body Detection maximum detection size */
Osamu Nakamura 0:813a237f1c50 16 #define HAND_SIZE_RANGE_MIN_DEFAULT 100 /* Hand Detection minimum detection size */
Osamu Nakamura 0:813a237f1c50 17 #define HAND_SIZE_RANGE_MAX_DEFAULT 1000 /* Hand Detection maximum detection size */
Osamu Nakamura 0:813a237f1c50 18 #define FACE_SIZE_RANGE_MIN_DEFAULT 100 /* Face Detection minimum detection size */
Osamu Nakamura 0:813a237f1c50 19 #define FACE_SIZE_RANGE_MAX_DEFAULT 1000 /* Face Detection maximum detection size */
Osamu Nakamura 0:813a237f1c50 20
Osamu Nakamura 0:813a237f1c50 21 #define FACE_POSE_DEFAULT 0 /* Face Detection facial pose (frontal face)*/
Osamu Nakamura 0:813a237f1c50 22 #define FACE_ANGLE_DEFAULT 0 /* Face Detection roll angle (±15°)*/
Osamu Nakamura 0:813a237f1c50 23
Osamu Nakamura 0:813a237f1c50 24 typedef struct {
Osamu Nakamura 0:813a237f1c50 25 INT32 execFlag;
Osamu Nakamura 0:813a237f1c50 26 HVC_THRESHOLD threshold;
Osamu Nakamura 0:813a237f1c50 27 HVC_SIZERANGE sizeRange;
Osamu Nakamura 0:813a237f1c50 28 INT32 pose;
Osamu Nakamura 0:813a237f1c50 29 INT32 angle;
Osamu Nakamura 0:813a237f1c50 30 } recognition_setting_t;
Osamu Nakamura 0:813a237f1c50 31
Osamu Nakamura 0:813a237f1c50 32 extern void recognition_task(DisplayBase * p_display);
Osamu Nakamura 0:813a237f1c50 33
Osamu Nakamura 0:813a237f1c50 34 extern recognition_setting_t * GetRecognitionSettingPointer(void);
Osamu Nakamura 0:813a237f1c50 35 extern void SetRegistrationrReq(void);
Osamu Nakamura 0:813a237f1c50 36 extern void SetSettingReq(void);
Osamu Nakamura 0:813a237f1c50 37
Osamu Nakamura 0:813a237f1c50 38 #endif
Osamu Nakamura 0:813a237f1c50 39